Crystallography Open Database

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1556761 CIFC11 H11 N O6P -16.7358; 6.9119; 12.3937
74.468; 85.298; 73.28
532.43Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556762 CIFC18 H17 N O10P 1 21/c 16.7323; 12.1142; 21.2077
90; 97.146; 90
1716.19Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556763 CIFC15 H16 N2 O9P 21 21 217.0213; 8.8214; 25.1416
90; 90; 90
1557.21Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556764 CIFC15 H16 N2 O9P -14.9225; 11.7839; 13.854
97.248; 96.773; 90.663
791.35Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556765 CIFC25 H29 N O17P -19.3161; 11.2092; 13.7362
102.926; 104.398; 96.571
1332.01Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556766 CIFC11 H9 N O5P 1 21/n 110.8426; 6.5202; 16.1326
90; 106.391; 90
1094.16Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556767 CIFC11 H9 N O6I 1 2/a 112.5506; 6.6807; 26.1586
90; 98.815; 90
2167.41Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556768 CIFC25 H27 N O17P -19.3796; 10.3981; 15.6415
80.62; 72.913; 66.089
1331.3Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556769 CIFC19 H19 N O8P c a 2140.692; 5.4524; 16.3546
90; 90; 90
3628.6Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556770 CIFC12 H13 N O6P -16.6761; 9.1128; 10.9447
93.397; 107.694; 108.173
593.92Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556771 CIFC18 H16 N2 O2C 1 2/c 118.451; 10.54; 8.157
90; 98.824; 90
1567.5Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556772 CIFC20 H20 N2 O2P 1 21/c 117.899; 4.8544; 9.5259
90; 101.847; 90
810.1Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556773 CIFC24 H28 N2 O2P 1 21/c 120.243; 4.9756; 20.839
90; 99.148; 90
2072.2Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556774 CIFC16 H14 N4 O2P 1 21/n 14.7315; 9.213; 16.39
90; 97.02; 90
709.1Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556775 CIFC18 H26 N4 O6P 1 21/c 19.353; 10.9015; 19.9985
90; 94.547; 90
2032.7Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556776 CIFC22 H30 N4 O4P 1 21/c 17.6364; 30.058; 4.8885
90; 95.523; 90
1116.9Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556777 CIFC16 H14 N4 O2P 1 21/c 110.403; 7.16; 19.202
90; 101.156; 90
1403.2Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556778 CIFC18 H18 N4 O2C 1 2/c 134.566; 9.3338; 10.4191
90; 100.401; 90
3306.3Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556779 CIFC18 H18 N4 O2P 1 21/n 14.7967; 11.547; 14.726
90; 96.451; 90
810.5Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556780 CIFC20 H26 N4 O4P 1 21/c 112.78; 4.681; 16.21
90; 93.42; 90
968Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556781 CIFC22 H30 N4 O4P 1 21/n 17.372; 4.9035; 31.586
90; 90.197; 90
1141.78Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556782 CIFC14 H12 F4 I N3 OP 1 21/c 113.9735; 17.2451; 13.6166
90; 105.489; 90
3162.1Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556783 CIFC16 H18 Br N3 OP -17.809; 9.6156; 11.452
101.314; 94.225; 113.541
761.9Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556784 CIFC23 H22 Br2 N2 O4P -19.3718; 9.6497; 14.1666
98.672; 105.769; 110.884
1107.38Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556785 CIFC14 H15 Br N2 O2P 1 21/c 113.5603; 8.17; 12.2863
90; 92.157; 90
1360.2Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556786 CIFC31 H19 F4 I N2 O4C 1 2 125.216; 6.0746; 19.0419
90; 107.453; 90
2782.5Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556787 CIFC17 H13 I N2 O2P -16.2888; 7.4027; 8.1348
84.773; 82.604; 83.781
372.2Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556788 CIFC19 H17 I N2 O2P 1 n 110.7653; 7.3634; 11.4066
90; 109.025; 90
854.8Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556789 CIFC14 H13 Br F4 N2 OP -14.4175; 12.5878; 13.4274
80.827; 82.672; 87.809
730.96Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556790 CIFC19 H13 Br F4 N2 O2P -14.8727; 10.7621; 16.595
87.808; 85.332; 83.646
861.66Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556791 CIFC15 H14 F4 I N3 OP 1 21/c 14.1573; 14.8817; 26.2084
90; 91.345; 90
1621.01Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556792 CIFC19 H14 F4 I N3 OP 1 21/n 16.2801; 11.2226; 26.846
90; 95.661; 90
1882.9Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556793 CIFC15 H13 F4 I N2 O2P n a 2117.5616; 14.8078; 6.1199
90; 90; 90
1591.47Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556794 CIFC17 H9 F4 I N2 O2P 1 21/c 112.1699; 11.1933; 12.2448
90; 104.562; 90
1614.42Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556795 CIFC26 H22 Br2 N2 O4P -17.1108; 7.4624; 11.2299
93.434; 94.022; 103.373
576.53Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556796 CIFC24 H18 Br2 N2 O4P 1 21/c 111.0467; 28.9658; 10.7956
90; 110.603; 90
3233.4Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556797 CIFC26 H14 Br2 F8 N4 O2P -15.837; 12.8464; 18.1146
103.537; 96.861; 93.06
1306.46Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556798 CIFC22 H10 Br2 F8 N2 O2P 1 21/c 113.6342; 5.8333; 13.3118
90; 90.944; 90
1058.58Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556799 CIFC24 H14 Br2 F8 N2 O2C 1 2/c 125.9125; 4.6925; 20.0909
90; 103.464; 90
2375.8Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556800 CIFC10 H5 F4 I N2 O2P 1 21/n 111.701; 4.6121; 21.594
90; 103.591; 90
1132.7Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556801 CIFC12 H5 F4 I N2 OP 1 21/n 112.7258; 4.9322; 20.729
90; 106.074; 90
1250.2Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556802 CIFC11 H5 F4 I N2 O3P -14.2485; 11.6204; 13.8288
110.206; 95.97; 98.531
624.68Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556803 CIFC13 H5 F4 I N2 O2P 1 21/c 17.4234; 35.8851; 10.0949
90; 101.028; 90
2639.5Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556804 CIFC13 H9 Br N2 O2P -17.363; 7.48; 12.446
80.617; 84.893; 62.018
597.17Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556805 CIFC12 H5 Br F4 N2 OP 1 21/n 112.2763; 5.0037; 20.666
90; 106.425; 90
1217.6Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556806 CIFC42 H28C m c e26.7965; 7.1599; 14.1519
90; 90; 90
2715.19Hathwar, Venkatesha R.; Sist, Mattia; Jørgensen, Mads R V; Mamakhel, Aref H.; Wang, Xiaoping; Hoffmann, Christina M.; Sugimoto, Kunihisa; Overgaard, Jacob; Iversen, Bo Brummerstedt
Quantitative analysis of intermolecular interactions in orthorhombic rubrene.
IUCrJ, 2015, 2, 563-574
1556807 CIFC42 H28C m c e26.8106; 7.1602; 14.2029
90; 90; 90
2726.52Hathwar, Venkatesha R.; Sist, Mattia; Jørgensen, Mads R V; Mamakhel, Aref H.; Wang, Xiaoping; Hoffmann, Christina M.; Sugimoto, Kunihisa; Overgaard, Jacob; Iversen, Bo Brummerstedt
Quantitative analysis of intermolecular interactions in orthorhombic rubrene.
IUCrJ, 2015, 2, 563-574
1556808 CIFC12 H14 Cl2 N2P -16.5705; 7.6756; 12.6098
85.165; 76.785; 73.868
594.58Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556809 CIFC12 H14 Cl2 N2P -16.5705; 7.6756; 12.6098
85.165; 76.785; 73.868
594.58Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556810 CIFC6 H7 Cl NP -16.5742; 7.6702; 12.636
85.26; 76.735; 73.823
595.5Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556811 CIFC12 H14 Cl2 N2P -16.57; 7.676; 12.61
85.17; 76.79; 73.87
594.593Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556812 CIFC12 H14 Cl2 N2P -16.57; 7.676; 12.61
85.17; 76.79; 73.87
594.593Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556813 CIFC20 H14 Cl4P 1 21 113.551; 8.0183; 14.8834
90; 94.021; 90
1613.19Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556814 CIFC20 H14 Cl4P 1 21 113.551; 8.0183; 14.8834
90; 94.021; 90
1613.19Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556815 CIFC22 H16 Cl2P 1 21 113.589; 8.0415; 14.943
90; 93.998; 90
1628.9Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556816 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.639; 90
1736.1Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556817 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.639; 90
1736.1Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556818 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.639; 90
1736.1Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556819 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.64; 90
1736.13Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556820 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.64; 90
1736.13Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556821 CIFC20 H30 FeC m c e15.0905; 11.4741; 9.9484
90; 90; 90
1722.6Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556822 CIFC20 H30 FeC m c e15.0905; 11.4741; 9.9484
90; 90; 90
1722.6Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556823 CIFC20 H30 FeC m c e15.119; 11.492; 9.967
90; 90; 90
1731.7Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556824 CIFC20 H14P 21 21 218.0798; 8.1645; 20.3778
90; 90; 90
1344.27Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556825 CIFC20 H14P 21 21 218.0798; 8.1645; 20.3778
90; 90; 90
1344.27Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556826 CIFC20 H14P 21 21 218.1019; 8.1922; 20.442
90; 90; 90
1356.8Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556827 CIFC20 H14P 21 21 218.08; 8.165; 20.378
90; 90; 90
1344.4Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556828 CIFC20 H14P 21 21 218.08; 8.165; 20.378
90; 90; 90
1344.4Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556829 CIFC30 H29 Cl2 Cu2 I2 N O2 S2P -111.7925; 11.9665; 13.4375
93.29; 95.681; 118.683
1643.38Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556830 CIFC29 H27 Cd2 I4 N O2 S2C 1 2/c 123.3017; 13.4569; 26.9935
90; 102.963; 90
8248.6Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556831 CIFC58 H54 Cd4 I8 N2 O4 S4P -111.66; 12.147; 12.585
75.142; 87.056; 86.996
1719.2Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556832 CIFC116 H106 Cd8 I16 N4 O8 S8P -111.3166; 13.4404; 24.586
86.655; 89.396; 78.371
3656.5Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556833 CIFC29 H27 Cd Cu I3 N O2 S2P -18.9645; 14.4098; 14.8826
65.853; 73.386; 81.546
1680.04Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556834 CIFC0.26 Na0.01 O2 SiF d -3 m :219.442; 19.442; 19.442
90; 90; 90
7348.9Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556835 CIFC0.26 Na0.01 O2 SiF d -3 m :219.4214; 19.4214; 19.4214
90; 90; 90
7325.6Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556836 CIFC0.58 Na0.02 O4.53 Si2.27A 1 2/n 123.7844; 13.732; 23.784
90; 109.47; 90
7324Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556837 CIFC0.26 Na0.01 O2 SiF d -3 m :219.4199; 19.4199; 19.4199
90; 90; 90
7323.9Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556838 CIFC0.58 Na0.02 O4.53 Si2.27A 1 2/n 123.834; 13.76; 23.833
90; 109.47; 90
7369Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556839 CIFC0.26 Na0.01 O2 SiF d -3 m :219.3944; 19.3944; 19.3944
90; 90; 90
7295.1Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556840 CIFC0.58 Na0.02 O4.53 Si2.27A 1 2/n 123.834; 13.76; 23.833
90; 109.47; 90
7369Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556841 CIFC0.26 Na0.01 O2 SiF d -3 m :219.3944; 19.3944; 19.3944
90; 90; 90
7295.1Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556842 CIFC0.58 Na0.02 O4.53 Si2.27A 1 2/n 123.7054; 13.6861; 23.7051
90; 109.47; 90
7251Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556843 CIFC0.26 Na0.01 O2 SiF d -3 m :219.3944; 19.3944; 19.3944
90; 90; 90
7295.1Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556844 CIFC45 H57 B N2 O2P -19.6381; 11.485; 19.0369
85.238; 75.946; 75.838
1981.44Bhunia, Mrinal; Sahoo, Sumeet Ranjan; Das, Arpan; Ahmed, Jasimuddin; P., Sreejyothi; Mandal, Swadhin K.
Transition metal-free catalytic reduction of primary amides using an abnormal NHC based potassium complex: integrating nucleophilicity with Lewis acidic activation
Chemical Science, 2020, 11, 1848-1854
1556845 CIFC244 H327 Ag31 Cl5 F24 O2 P6 Pt S16 Sb4P -121.515; 24.1156; 35.321
81.037; 78.006; 68.595
16625Kang, Xi; Jin, Shan; Xiong, Lin; Wei, Xiao; Zhou, Manman; Qin, Chenwanli; Pei, Yong; Wang, Shuxin; Zhu, Manzhou
Nanocluster growth <i>via</i> "graft-onto": effects on geometric structures and optical properties.
Chemical science, 2020, 11, 1691-1697
1556846 CIFC11 H13 F9 O2P 21 21 215.6044; 9.5819; 26.472
90; 90; 90
1421.57Sperandio, Céline; Rodriguez, Jean; Quintard, Adrien
Development of copper-catalyzed enantioselective decarboxylative aldolization for the preparation of perfluorinated 1,3,5-triols featuring supramolecular recognition properties.
Chemical science, 2020, 11, 1629-1635
1556847 CIFC7 H10 F6 O3P 1 21 14.9029; 9.8824; 10.7838
90; 100.543; 90
513.68Sperandio, Céline; Rodriguez, Jean; Quintard, Adrien
Development of copper-catalyzed enantioselective decarboxylative aldolization for the preparation of perfluorinated 1,3,5-triols featuring supramolecular recognition properties.
Chemical science, 2020, 11, 1629-1635
1556848 CIF
HKL
Paper
C16 H20 N2 O2 SP 1 21/n 114.4124; 14.9172; 15.1412
90; 100.377; 90
3202R, Shashi; Begum, Noor Shahina
Ethyl 4-(2,5-dimethylphenyl)-6-methyl-2-sulfanylidene-1,2,3,4-tetrahydropyrimidine-5-carboxylate
IUCrData, 2017, 2, x171440
1556849 CIFC16 H6 F6 N2 O2P b c n11.7327; 9.6358; 13.0361
90; 90; 90
1473.8Liu, Jingfeng; Meng, Qingjie; Li, Liying; Lu, Gewu; Yuan, Hang; Cui, Lei; Liu, Xia; Mu, Hongliang; Ji, Jingjing; Zhou, Defeng; Wang, Zhen; Yan, Jingling
A high-performance polycyanurate network derived from 4,4′-biscyanato-2,2′-trifluoromethylbiphenyl
Polymer Chemistry, 2020, 11, 784-788
1556850 CIFC20 H28 O3P 1 21 18.26597; 9.64323; 10.64668
90; 98.2546; 90
839.862Guo, Yong-Wei; Gong, Ben-Qiang; Yuan, Jie; Li, Hou-Jin; Mahmud, Taifo; Huang, Yun; Li, Jian-Feng; Yang, De-Po; Lan, Wen-Jian
l-Phenylalanine Alters the Privileged Secondary Metabolite Production in the Marine-Derived Fungus Trichoderma erinaceum F1-1
Journal of Natural Products, 2019
1556851 CIFC29 H31 N O S2P 1 21/c 15.512; 27.2877; 16.0208
90; 90; 90
2409.7Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556852 CIFC21 H24 N2 O S3P -111.4995; 13.626; 14.631
79.476; 69.652; 70.613
2021.8Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556853 CIFC174 H186 Ag6 Cl6 N6 O30 S12P a -325.8366; 25.8366; 25.8366
90; 90; 90
17246.7Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556854 CIFC22 H26 Ag Cl2 F6 N2 O P S3C 1 2 127.888; 14.9539; 7.2021
90; 95.118; 90
2991.5Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556855 CIFC24 H30 Cl2 Hg N2 O10 S3P 1 21/c 112.902; 21.339; 11.771
90; 116.33; 90
2904.5Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556856 CIFC21 H24 Hg I2 N2 O S3C m c 2110.0374; 31.171; 8.3311
90; 90; 90
2606.6Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556857 CIFC32 H54 O4P 21 21 216.2668; 14.648; 31.434
90; 90; 90
2885.5Li, Bin; Kuang, Yi; He, Jun-Bin; Tang, Rui; Xu, Lu-Lu; Leung, Chung-Hang; Ma, Dik-Lung; Qiao, Xue; Ye, Min
Antcamphorols A‒K, Cytotoxic and ROS Scavenging Triterpenoids from Antrodia camphorata
Journal of Natural Products, 2019
1556858 CIFC29 H44 O2P 21 21 2111.0367; 12.1537; 18.4758
90; 90; 90
2478.3Li, Bin; Kuang, Yi; He, Jun-Bin; Tang, Rui; Xu, Lu-Lu; Leung, Chung-Hang; Ma, Dik-Lung; Qiao, Xue; Ye, Min
Antcamphorols A–K, Cytotoxic and ROS Scavenging Triterpenoids from Antrodia camphorata
Journal of Natural Products, 2019
1556859 CIFC15 H16 N2 O2A e a 211.4176; 13.5604; 16.3722
90; 90; 90
2534.9Wen, Jin; Turowski, Michał; Dron, Paul I.; Chalupský, Jakub; Grotjahn, Robin; Maier, Toni M.; Fatur, Steven M.; Havlas, Zdeněk; Johnson, Justin C.; Kaupp, Martin; Michl, Josef
Electronic States of 2,3-Diamino-1,4-naphthoquinone and Its N-Alkylated Derivatives
The Journal of Physical Chemistry C, 2019
1556860 CIFC45 H44 Cl F5 N4 NiP 1 21/c 119.2423; 10.9261; 21.5899
90; 106.046; 90
4362.3Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556861 CIFC45 H50 F5 N3 NiP 1 21/c 112.0799; 14.6404; 24.1769
90; 91.408; 90
4274.5Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556862 CIFC44 H45 F5 N3 NiP -19.5949; 11.8426; 18.3253
92.953; 104.293; 100.626
1972.9Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556863 CIFC45 H49 F5 N3 NiP n a 2114.1294; 16.6197; 15.8282
90; 90; 90
3716.9Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556864 CIFC40 H39 F5 N3 NiP 1 21/c 117.7017; 15.1269; 13.141
90; 109.571; 90
3315.5Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556865 CIFC12 H8 I2 N2 O7P n a 218.2007; 7.7793; 24.6164
90; 90; 90
1570.42Zhang, Guangtao; Wang, Yuanxun; Xu, Jun; Sun, Jiyun; Sun, Fengxia; Zhang, Yilin; Zhang, Chenglin; Du, Yunfei
A new hypervalent iodine(iii/v) oxidant and its application to the synthesis of 2H-azirines
Chemical Science, 2020, 11, 947-953
1556866 CIFC36 H50 B2P -19.035; 12.0924; 14.7514
92.899; 103.022; 103.134
1520.32Su, Xiaojun; Baker, J. J.; Martin, Caleb D.
Dimeric boroles: effective sources of monomeric boroles for heterocycle synthesis.
Chemical science, 2020, 11, 126-131
1556867 CIFC32 H35 B OP 1 21/c 110.6036; 17.5824; 17.446
90; 125.621; 90
2643.98Su, Xiaojun; Baker, J. J.; Martin, Caleb D.
Dimeric boroles: effective sources of monomeric boroles for heterocycle synthesis.
Chemical science, 2020, 11, 126-131
1556868 CIFC34 H31 B OP b c a10.0358; 12.1076; 43.226
90; 90; 90
5252.4Su, Xiaojun; Baker, J. J.; Martin, Caleb D.
Dimeric boroles: effective sources of monomeric boroles for heterocycle synthesis.
Chemical science, 2020, 11, 126-131
1556869 CIFC61 H60 Cl2 N4 O2 RuP 1 21/c 111.5545; 17.3432; 25.028
90; 95.757; 90
4990.1Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556870 CIFC64 H52 F4 N4 OsP -111.0536; 11.1353; 11.8926
97.46; 108.927; 107.647
1276.53Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556871 CIFC59 H27 F20 Fe N5P 110.5317; 14.347; 17.434
76.71; 80.147; 84.826
2522.3Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556872 CIFC59 H50 Cl3 D Fe N4P -111.3588; 13.5043; 16.5422
85.786; 84.24; 70.986
2384.6Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556873 CIFC65.5 H39.5 F20 N8 RuC 1 2/c 124.815; 20.891; 24.043
90; 100.174; 90
12268Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556874 CIFC48 H54 Cu F12 N6 O2 P2P 1 21/n 121.313; 9.951; 24.687
90; 107.778; 90
4986Ryan, Michael C.; Kim, Yeon Jung; Gerken, James B.; Wang, Fei; Aristov, Michael M.; Martinelli, Joseph R.; Stahl, Shannon S.
Mechanistic insights into copper-catalyzed aerobic oxidative coupling of N–N bonds
Chemical Science, 2020, 11, 1170-1175
1556875 CIFC311.2 H387.9 B90.2 F18 Fe4 N55.5 O36 S6C 1 c 133.357; 32.3478; 45.8124
90; 102.32; 90
48294.4Lu, Zhenpin; Ronson, Tanya K.; Nitschke, Jonathan R.
Reversible reduction drives anion ejection and C60 binding within an FeII4L6 cage
Chemical Science, 2020, 11, 1097-1101
1556876 CIFC26 H42 N2 S8 Sn2P -17.7711; 10.3961; 12.6341
113.062; 96.284; 98.114
914.39Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556877 CIFC120 H88 B2 F48 Fe2 O2 S8 Sn2P 1 21/c 112.734; 31.568; 18.543
90; 107.358; 90
7115Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556878 CIFC57 H53.5 B F24 N0.5 O0.5 S8 Sn2P 1 21/c 19.5804; 23.505; 30.294
90; 97.92; 90
6756.8Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556879 CIFC122 H72 B2 F48 Ni2 P4 S8C 1 2/c 140.752; 18.985; 17.7197
90; 107.903; 90
13045.5Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556880 CIFC90 H60 B F24 Ni2 P4 S8P -114.1624; 18.3974; 20.189
94.073; 103.397; 106.515
4852.9Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556881 CIFC102 H92 B2 F48 O4 S8 Sn2P -112.9111; 15.863; 16.368
88.537; 88.979; 69.195
3132.6Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556882 CIFC106 H68 B F24 Fe2 P4 Pd2 S8P -113.503; 19.054; 28.239
105.082; 91.975; 90.73
7009Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556883 CIFC540 H360 B6 F144 P24 Pd12 S48P -129.421; 31.324; 35.123
92.011; 91.984; 99.304
31897Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556884 CIFC40 H36 F6 N3 O3 PP 1 21 18.20579; 29.4208; 16.5731
90; 93.223; 90
3994.76Duwald, Romain; Bosson, Johann; Pascal, Simon; Grass, Stéphane; Zinna, Francesco; Besnard, Céline; Di Bari, Lorenzo; Jacquemin, Denis; Lacour, Jérôme
Merging polyacenes and cationic helicenes: from weak to intense chiroptical properties in the far red region
Chemical Science, 2020, 11, 1165-1169
1556885 CIFC61 H46 F6 N5 O2 PC 1 2/c 127.6234; 16.7146; 21.7661
90; 106.545; 90
9633.6Duwald, Romain; Bosson, Johann; Pascal, Simon; Grass, Stéphane; Zinna, Francesco; Besnard, Céline; Di Bari, Lorenzo; Jacquemin, Denis; Lacour, Jérôme
Merging polyacenes and cationic helicenes: from weak to intense chiroptical properties in the far red region
Chemical Science, 2020, 11, 1165-1169
1556886 CIFC95 H78 Cl6 F12 N6 O2 P2P 1 21/c 111.678; 12.9347; 27.785
90; 90.912; 90
4196.4Duwald, Romain; Bosson, Johann; Pascal, Simon; Grass, Stéphane; Zinna, Francesco; Besnard, Céline; Di Bari, Lorenzo; Jacquemin, Denis; Lacour, Jérôme
Merging polyacenes and cationic helicenes: from weak to intense chiroptical properties in the far red region
Chemical Science, 2020, 11, 1165-1169
1556887 CIFC40 H48 B2 Ca F48 O16I 41/a :219.597; 19.597; 36.7108
90; 90; 90
14098.5Li, Zhenyou; Fuhr, Olaf; Fichtner, Maximilian; Zhao-Karger, Zhirong
Towards stable and efficient electrolytes for room-temperature rechargeable calcium batteries
Energy & Environmental Science, 2019, 12, 3496
1556888 CIFC18 H14 F4 N2 O4 SP 1 21/c 114.8945; 12.1188; 10.2846
90; 105.825; 90
1786.05Korlyukov, Alexander A.; Malinska, Maura; Vologzhanina, Anna V.; Goizman, Mikhail S.; Trzybinski, Damian; Wozniak, Krzysztof
Charge density view on bicalutamide molecular interactions in the monoclinic polymorph and androgen receptor binding pocket
IUCrJ, 2020, 7, 71-82
1556889 CIFC54 H42 Cu2 N2 O8C 1 2/c 124.633; 12.093; 15.509
90; 108.48; 90
4382Yadava, Khushboo; Gallo, Gianpiero; Bette, Sebastian; Mulijanto, Caroline Evania; Karothu, Durga Prasad; Park, In-Hyeok; Medishetty, Raghavender; Naumov, Panče; Dinnebier, Robert E.; Vittal, Jagadese J.
Extraordinary anisotropic thermal expansion in photosalient crystals
IUCrJ, 2020, 7, 83-89
1556890 CIFC54 H40 Cu2 F2 N2 O8C 1 2/c 124.9699; 12.1074; 15.4675
90; 108.809; 90
4426.4Yadava, Khushboo; Gallo, Gianpiero; Bette, Sebastian; Mulijanto, Caroline Evania; Karothu, Durga Prasad; Park, In-Hyeok; Medishetty, Raghavender; Naumov, Panče; Dinnebier, Robert E.; Vittal, Jagadese J.
Extraordinary anisotropic thermal expansion in photosalient crystals
IUCrJ, 2020, 7, 83-89
1556891 CIFC54 H40 Cu2 F2 N2 O8C 1 2/c 125.1802; 12.0004; 15.5976
90; 108.802; 90
4461.7Yadava, Khushboo; Gallo, Gianpiero; Bette, Sebastian; Mulijanto, Caroline Evania; Karothu, Durga Prasad; Park, In-Hyeok; Medishetty, Raghavender; Naumov, Panče; Dinnebier, Robert E.; Vittal, Jagadese J.
Extraordinary anisotropic thermal expansion in photosalient crystals
IUCrJ, 2020, 7, 83-89
1556892 CIFC54 H40 Cu2 F2 N2 O8P -110.3725; 11.0398; 12.0294
71.354; 66.229; 65.356
1126.6Yadava, Khushboo; Gallo, Gianpiero; Bette, Sebastian; Mulijanto, Caroline Evania; Karothu, Durga Prasad; Park, In-Hyeok; Medishetty, Raghavender; Naumov, Panče; Dinnebier, Robert E.; Vittal, Jagadese J.
Extraordinary anisotropic thermal expansion in photosalient crystals
IUCrJ, 2020, 7, 83-89
1556893 CIFC5 H5 NP 21 21 215.392; 6.806; 11.261
90; 90; 90
413.3Giordano, Nico; Beavers, Christine M.; Campbell, Branton J.; Eigner, Václav; Gregoryanz, Eugene; Marshall, Willliam G.; Peña-Álvarez, Miriam; Teat, Simon J.; Vennari, Cara E.; Parsons, Simon
High-pressure polymorphism in pyridine
IUCrJ, 2020, 7, 58-70
1556894 CIFC5 H5 NP 41 21 25.4053; 5.4053; 13.4853
90; 90; 90
394Giordano, Nico; Beavers, Christine M.; Campbell, Branton J.; Eigner, Václav; Gregoryanz, Eugene; Marshall, Willliam G.; Peña-Álvarez, Miriam; Teat, Simon J.; Vennari, Cara E.; Parsons, Simon
High-pressure polymorphism in pyridine
IUCrJ, 2020, 7, 58-70
1556895 CIF
HKL
Paper
C42 H19 F16 Os P S4P 1 21/c 112.4008; 13.8892; 25.2321
90; 100.991; 90
4266.2Zeleny, Paulina; Arroyo, Maribel; Meléndez, Lidia; Bernès, Sylvain
Tetrakis(2,3,5,6-tetrafluorobenzenethiolato-κ<i>S</i>)(triphenylphosphane-κ<i>P</i>)osmium(IV): a monoclinic polymorph
IUCrData, 2019, 4, x191622
1556896 CIF
HKL
Paper
C52 H50 O8 P2P 1 21/c 125.1072; 8.8634; 21.3401
90; 112.444; 90
4389.2Leidecker, Benedict N.; Kubis, Christoph; Spannenberg, Anke; Franke, Robert; Börner, Armin
6,6'-[(3,3'-Di-<i>tert</i>-butyl-5,5'-dimethoxy-1,1'-biphenyl-2,2'-diyl)bis(oxy)]bis(dibenzo[<i>d</i>,<i>f</i>][1,3,2]dioxaphosphepine) benzene monosolvate
IUCrData, 2019, 4, x191636
1556897 CIF
HKL
Paper
C12 H10 N2 O2 SP 1 21/c 113.5979; 7.3148; 12.5931
90; 112.763; 90
1155.02Alicea-Velázquez, Nilda L.; Crundwell, Guy
(<i>E</i>)-1-(5-Methylthiophen-2-yl)-<i>N</i>-(4-nitrophenyl)methanimine
IUCrData, 2019, 4, x191601
1556898 CIF
HKL
Paper
C29 H26 Cl N O4P 1 21/n 110.519; 22.059; 11.246
90; 97.867; 90
2584.9Ameen, K. K. Mohammed; Ahamed, F. M. Mashood; Padusha, M. Syed Ali; Gunasekaran, B.
Diethyl 4-(3-chlorophenyl)-2,6-diphenyl-1,4-dihydropyridine-3,5-dicarboxylate
IUCrData, 2019, 4, x191644
1556899 CIFC144 H300 Ni6 S12P -113.0353; 18.6391; 19.8731
108.331; 108.152; 101.306
4117.5Zhuang, Zhihua; Chen, Wei
One-step rapid synthesis of Ni<sub>6</sub>(C<sub>12</sub>H<sub>25</sub>S)<sub>12</sub> nanoclusters for electrochemical sensing of ascorbic acid.
The Analyst, 2020, 145, 2621-2630
1556900 CIFC62 H79 Cl2 N5 O6 Pt SI 1 2/a 126.7934; 12.4321; 39.1414
90; 106.494; 90
12501.4Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556901 CIFC67 H79 B2 F8 N7 O6 PtP -110.1982; 18.2063; 19.7708
105.665; 99.693; 96.105
3439.2Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556902 CIFC65 H76 F6 N6 O6 Pt SbP -111.78747; 15.5279; 22.4447
101.252; 102.144; 103.723
3769.49Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556903 CIFC66 H77 B F4 N8 O5 PtP 1 21/n 121.738; 14.9289; 21.8888
90; 107.531; 90
6773.5Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556904 CIFC69 H85 Ag F12 N6 O6 Pt Sb2P 1 21/n 118.7462; 15.4022; 27.6759
90; 104.791; 90
7726.1Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556905 CIFC60 H72 B F4 N5 O5 PtP -112.2375; 14.6363; 18.2789
81.118; 76.017; 74.098
3041.7Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556906 CIFC67 H77 Ag F15 N7 O5 Pt Sb2.5P -113.0371; 18.3984; 18.4639
88.81; 89.789; 83.438
4398.8Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556907 CIFC23 H24 N2 O5 SP 21 21 230.4605; 11.6596; 6.1159
90; 90; 90
2172.11Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556908 CIFC20 H23 N3 O3P 21 21 217.191; 13.5045; 18.6644
90; 90; 90
1812.52Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556909 CIFC20 H25 N3 O2P 1 21/n 16.8118; 17.5495; 15.1113
90; 91.427; 90
1805.9Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556910 CIFC22 H21.25 N3 O2.125P 1 21 110.18405; 9.71457; 18.82762
90; 93.0169; 90
1860.1Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556911 CIFC24 H21 F3 N2 O4 SP 21 21 2132.8358; 11.60538; 5.85758
90; 90; 90
2232.16Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556912 CIFC22 H25 N3 O2P 1 21 112.4713; 9.02632; 17.84198
90; 92.8702; 90
2005.95Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556913 CIFC20 H19 N3 OP 1 21 110.10659; 5.94958; 13.62038
90; 99.5974; 90
807.53Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556914 CIFC28 H30 N2 O2P 21 21 218.33247; 15.71709; 17.93381
90; 90; 90
2348.65Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556915 CIFC24 H24 N2 O4 SP 21 21 216.0985; 11.5023; 30.8387
90; 90; 90
2163.2Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556916 CIFC19 H20 N4 O8P -19.6356; 9.7619; 23.71
87.91; 82.49; 64.631
1997.4Berg, Ulf; Butts, Craig P.; Eberson, Lennart; Hartshorn, Michael P.; Persson, Ola
Photochemical Nitration by Tetranitromethane. Part XLIV. Some Reactions of 2-Phenylpropene and 2,4,6-Trimethylstyrene with Tetranitromethane: Competition between the Radical Chain Addition Reaction and Isoxazolidine Formation: Nitrogen Inversion in Some Isoxazolidines.
Acta Chemica Scandinavica, 1998, 52, 761-769
1556917 CIFC22 H22 Cu2 N4 O14C 1 2/c 113.687; 8.169; 21.619
90; 92.32; 90
2415.2Sletten, Jorunn; Bjorsvik, Ole
Synthesis and Crystal Structures of Two Dinuclear Copper(II) Complexes with 2,3-Bis(2-pyridyl)pyrazine as Bridging Ligand
Acta Chemica Scandinavica, 1998, 52, 770-777
1556918 CIFC24 H20 Cu2 N4 O15P -18.654; 9.702; 16.156
94.63; 99.75; 98.93
1312.7Sletten, Jorunn; Bjorsvik, Ole
Synthesis and Crystal Structures of Two Dinuclear Copper(II) Complexes with 2,3-Bis(2-pyridyl)pyrazine as Bridging Ligand
Acta Chemica Scandinavica, 1998, 52, 770-777
1556919 CIFC13 H11 N3 O2R -3 :H24.5798; 24.5798; 11.7412
90; 90; 120
6143.3Desta, Israel Tilahun; Chizhik, Stanislav A.; Sidelnikov, Anatoli A.; Karothu, Durga Prasad; Boldyreva, Elena V.; Naumov, Pance
Mechanically Responsive Crystals: Analysis of Macroscopic Strain Reveals "Hidden" Processes.
The journal of physical chemistry. A, 2019
1556920 CIFC26 H37 N2 O11.5P 1 21 17.46638; 22.8958; 15.81982
90; 91.5281; 90
2703.42Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556921 CIFC26 H35 N2 O11.5P 21 21 215.6664; 8.4625; 52.2037
90; 90; 90
2503.27Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556922 CIFC29 H34 N2 O12P 21 21 218.15738; 10.7672; 33.9634
90; 90; 90
2983.08Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556923 CIFC32 H48 N2 O19P 1 21 112.69983; 8.73522; 17.77957
90; 98.7531; 90
1949.42Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556924 CIFC26 H32 N2 O9P 1 21 112.01025; 9.55452; 13.71388
90; 92.4358; 90
1572.28Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556925 CIFC27 H35 N2 O10.5P 1 21 118.6115; 8.4248; 21.2254
90; 109.341; 90
3140.3Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556926 CIFC32 H40 N2 O13P 1 21 117.4386; 6.02603; 18.7078
90; 94.6535; 90
1959.44Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556927 CIFC9 H19 I2 N3 PdC 1 2/c 114.7908; 7.8079; 27.592
90; 99.197; 90
3145.5Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556928 CIFC13 H21 I2 N3 PdP 1 21/c 117.5721; 12.5994; 8.4655
90; 99.55; 90
1848.27Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556929 CIFC15 H17 I2 N3 PdC 1 2/c 121.6545; 8.657; 20.1671
90; 95.408; 90
3763.8Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556930 CIFC16 H19 I2 N3 PdP -19.5333; 10.964; 11.3716
62.48; 79.571; 67.896
976.59Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556931 CIFC25 H24 N2 O4I -418.1165; 18.1165; 12.8619
90; 90; 90
4221.4George, Josemon; Ward, Jas S.; Sherburn, Michael S.
A general synthesis of dendralenes
Chemical Science, 2019, 10, 9969
1556932 CIFC25 H24.34 N2 O4.17C 1 2 122.1402; 6.8047; 14.236
90; 100.71; 90
2107.4George, Josemon; Ward, Jas S.; Sherburn, Michael S.
A general synthesis of dendralenes
Chemical Science, 2019, 10, 9969
1556933 CIFC25 H24 N2 O4C 1 2/c 121.8655; 6.7309; 29.0129
90; 100.54; 90
4197.9George, Josemon; Ward, Jas S.; Sherburn, Michael S.
A general synthesis of dendralenes
Chemical Science, 2019, 10, 9969
1556934 CIFC131 H56 N4 Ni Ti3C 1 2/m 125.0964; 15.1544; 19.7269
90; 95.336; 90
7470Yu, Pengyuan; Shen, Wangqiang; Bao, Lipiao; Pan, Changwang; Slanina, Zdenek; Lu, Xing
Trapping an unprecedented Ti3C3 unit inside the icosahedral C80 fullerene: a crystallographic survey
Chemical Science, 2019, 10, 10925
1556935 CIFC26 H27 N3 O SP -17.0287; 11.0372; 15.2233
76.459; 89.714; 78.323
1123.27Hoche, Joscha; Schulz, Alexander; Dietrich, Lysanne Monika; Humeniuk, Alexander; Stolte, Matthias; Schmidt, David; Brixner, Tobias; Würthner, Frank; Mitric, Roland
The origin of the solvent dependence of fluorescence quantum yields in dipolar merocyanine dyes
Chemical Science, 2019, 10, 11013
1556936 CIFC21 H25 B F5 N O P SP 1 21 16.5464; 17.3658; 21.0198
90; 96.37; 90
2374.85Qiu, Haile; Chen, Xiaofeng; Zhang, Junliang
Design, synthesis and application of a new type of bifunctional Le-Phos in highly enantioselective γ-addition reactions of N-centered nucleophiles to allenoates
Chemical Science, 2019, 10, 10510
1556937 CIFC19 H20 N2 O2 SP 1 21 17.2656; 9.5413; 13.0878
90; 100.119; 90
893.18Qiu, Haile; Chen, Xiaofeng; Zhang, Junliang
Design, synthesis and application of a new type of bifunctional Le-Phos in highly enantioselective γ-addition reactions of N-centered nucleophiles to allenoates
Chemical Science, 2019, 10, 10510
1556938 CIFC21 H26 B F5 N O P SP 1 21 117.1138; 6.6266; 20.6037
90; 93.452; 90
2332.4Qiu, Haile; Chen, Xiaofeng; Zhang, Junliang
Design, synthesis and application of a new type of bifunctional Le-Phos in highly enantioselective γ-addition reactions of N-centered nucleophiles to allenoates
Chemical Science, 2019, 10, 10510
1556939 CIFC22 H24 F N O4P 1 21/c 111.4515; 13.8216; 13.0859
90; 95.239; 90
2062.56Qiu, Haile; Chen, Xiaofeng; Zhang, Junliang
Design, synthesis and application of a new type of bifunctional Le-Phos in highly enantioselective γ-addition reactions of N-centered nucleophiles to allenoates
Chemical Science, 2019, 10, 10510
1556940 CIFC18 H19 N3 TiP -17.7583; 9.5204; 11.4421
70.673; 88.342; 84.629
794.01Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556941 CIFC40 H52 O4 TiP -4 21 c15.2024; 15.2024; 7.9195
90; 90; 90
1830.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556942 CIFC56 H84 O4 TiP -4 21 c12.312; 12.312; 17.7572
90; 90; 90
2691.73Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556943 CIFC40 H48 F4 O4 TiP -4 21 c15.2973; 15.2973; 8.263
90; 90; 90
1933.6Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556944 CIFC35.67 H51.5 O2.67 Ti0.67P 1 21/c 112.9534; 21.2798; 19.3799
90; 98.805; 90
5279Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556945 CIFC44 H48 Br4 O4 TiI 41/a :222.37; 22.37; 9.5963
90; 90; 90
4802.2Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556946 CIFC19 H35 Cr N3 OP 1 21/n 19.1061; 9.1819; 25.815
90; 93.065; 90
2155.34Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556947 CIFC48.5 H70.5 O4 TiC 1 2/c 122.452; 9.4744; 22.253
90; 90.71; 90
4733.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556948 CIFC30 H45 Cl3 O4 TiP -111.5725; 12.3899; 13.0612
67.658; 80.546; 66.699
1590.67Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556949 CIFC44 H60 O8 TiP 1 21 110.0587; 14.8851; 14.1568
90; 90.284; 90
2119.6Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556950 CIFC44 H48 F12 O4 TiC 1 2/c 122.059; 9.8711; 22.6307
90; 110.609; 90
4612.4Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556951 CIFC65 H88 N3 O4 Ti2C 1 2/c 134.0256; 17.3283; 25.5196
90; 121.054; 90
12890.1Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556952 CIFC23 H30 I2 O2 TiP -19.69; 9.8844; 13.151
90.518; 92.411; 95.161
1253.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556953 CIF
HKL
Paper
C24 H16 Cl4I 1 2/c 113.7822; 10.7752; 27.0787
90; 99.901; 90
3961.5Detert, Heiner; Schollmeyer, Dieter
5,8,13,13-Tetrachloro-13<i>H</i>-dibenzo[<i>a</i>,<i>i</i>]fluorene cyclohexane hemisolvate
IUCrData, 2019, 4, x190236
1556954 CIFC15 H12 F4 O2P 1 21/m 16.849; 13.452; 8.072
90; 103.95; 90
721.8Dahl, Tor
Crystal Structure of the 1:1 Complex Between Mesitylene and Fluoranil. Analysis of Stacking Interactions in Complexes Containing Fluoranil
Acta Chemica Scandinavica, 1998, 52, 1006-1009
1556955 CIFC15 H20 Cl2 Co N4 O10P -18.076; 10.129; 13.894
80.11; 83.69; 80.46
1100.3Jantti, Anu; Rissanen, Kari; Valkonen, Jussi
Synthesis of Open-Chain Schiff-Base Ligand 1,3-Di(pyridine-2-carboxaldimino)propane Incorporating Nitrogen-Donor Atoms and Crystal Structures of Its CoII, CuII and ZnII Complexes
Acta Chemica Scandinavica, 1998, 52, 1010-1016
1556956 CIFC15 H16 Cl2 Cu N4 O8P 1 21/c 114.419; 7.118; 19.704
90; 110.34; 90
1896.2Jantti, Anu; Rissanen, Kari; Valkonen, Jussi
Synthesis of Open-Chain Schiff-Base Ligand 1,3-Di(pyridine-2-carboxaldimino)propane Incorporating Nitrogen-Donor Atoms and Crystal Structures of Its CoII, CuII and ZnII Complexes
Acta Chemica Scandinavica, 1998, 52, 1010-1016
1556957 CIFC15 H16 Cl2 N4 O8 ZnP -18.748; 9.169; 25.081
82.13; 83.1; 75.56
1922.1Jantti, Anu; Rissanen, Kari; Valkonen, Jussi
Synthesis of Open-Chain Schiff-Base Ligand 1,3-Di(pyridine-2-carboxaldimino)propane Incorporating Nitrogen-Donor Atoms and Crystal Structures of Its CoII, CuII and ZnII Complexes
Acta Chemica Scandinavica, 1998, 52, 1010-1016
1556958 CIFC15 H40 Co Ir N12 O5P -18.467; 9.022; 18.303
89.4; 101.05; 99.2
1354.3Brorson, Michael; Galsbol, Frode; Simonsen, Kim; Skov, Lars K.; Sotofte, Inger
Preparation and Characterization of cis- and trans-[Ir(tn)2Cl2]CF3SO3 and of [Ir(tn)3]Cl3 (tn = propane-1,3-diamine)
Acta Chemica Scandinavica, 1998, 52, 1017-1023
1556959 CIFC5 H15 Cd N5 O6P -18.026; 8.113; 10.321
90.449; 89.862; 114.77
610.2Mondal, Arunendu; Chaudhuri, Siddhartha; Ghosh, Ashutosh; Laskar, Inamur Rahaman; Chaudhuri, Nirmalendu Ray
Synthesis and Single-Crystal Structure of an Unusual Heptacoordinate Cadmium(II) Complex, [Cd(medien)(NO3)2] (medien = bis(2-aminoethyl)methylamine)
Acta Chemica Scandinavica, 1998, 52, 1064-1067
1556960 CIFC20 H16 N2 O3P 1 21/c 111.2; 10.0306; 15.005
90; 111.72; 90
1566Fatum, Tine M.; Anthoni, Uffe; Christophersen, Carsten; Nielsen, Per Halfdan
Stereochemistry of Dimerisation of Indole-3-acetic Acid and its Propyl Ester
Acta Chemica Scandinavica, 1998, 52, 784-789
1556961 CIFC22 H29 N3P 1 21/c 19.381; 10.94; 17.856
90; 97.01; 90
1818.8Songe, Pal; Kolsaker, Per; Romming, Christian
Syntheses and Reactions of Some Cyclopropyl-Substituted Imines. Part 1.
Acta Chemica Scandinavica, 1998, 52, 790-796
1556962 CIFC18 H24 N2P 1 21/c 19.526; 16.086; 9.672
90; 92.71; 90
1480.4Songe, Pal; Kolsaker, Per; Romming, Christian
Syntheses and Reactions of Some Cyclopropyl-Substituted Imines. Part 1.
Acta Chemica Scandinavica, 1998, 52, 790-796
1556963 CIFC27 H37 Cl2 Cu N7 O8P 21 c n10.175; 15.191; 20.79
90; 90; 90
3213.5Bu, Xian-He; Chen, Wei; Fang, Ya-Yin; Lu, Shou-Liang; Wang, Chang-Feng; Zhang, Ruo-Hua
Synthesis and Crystal Structure of the Copper(II) Complex of 1-Methyl-4,7,10-(2-pyridylmethyl)-1,4,7,10-tetraazacyclododecane (L), [CuL]2+
Acta Chemica Scandinavica, 1998, 52, 813-815
1556964 CIFC12 H14 N2 O22 Pb4P b c m9.309; 8.4023; 34.331
90; 90; 90
2685.3Svensson, Goran; Olson, Solveig; Albertsson, Jorgen
Coordination Between Lead and Oxydiacetic Acid
Acta Chemica Scandinavica, 1998, 52, 868-872
1556965 CIFC56 H68 Cl4 Cu N4 O9C 1 2/c 128.271; 14.829; 15.892
90; 117.29; 90
5921Liu, Cai-Ming; Xiong, Ren-Gen; You, Xiao-Zeng; Chen, Wei
Crystal Structures and Luminescence Spectra of Transition Metal Complexes of Rhodamine 6G: R2[CuCl4].3H2O and R2[MnCl4].(EtOH)0.5 [R = 9-(2-Ethoxycarbonyl)phenyl-3,6-bis(ethylamino)-2,7-dimethylxanthylium]
Acta Chemica Scandinavica, 1998, 52, 883-890
1556966 CIFC57 H65 Cl4 Mn N4 O6.5P -111.677; 12.532; 20.683
99.42; 99.57; 96.46
2913.8Liu, Cai-Ming; Xiong, Ren-Gen; You, Xiao-Zeng; Chen, Wei
Crystal Structures and Luminescence Spectra of Transition Metal Complexes of Rhodamine 6G: R2[CuCl4].3H2O and R2[MnCl4].(EtOH)0.5 [R = 9-(2-Ethoxycarbonyl)phenyl-3,6-bis(ethylamino)-2,7-dimethylxanthylium]
Acta Chemica Scandinavica, 1998, 52, 883-890
1556967 CIFC58 H40 S2P -114.419; 13.874; 16.723
108.8; 62.58; 132.38
2193Henriksen, Michael; Hazell, Rita G.; Larsen, Finn Krebs; Schultz, Thomas; Sylvester-Hvid, Kristian O.; Klabunde, Kenneth J.; Mikkelsen, Kurt V.; Senning, Alexander
Synthesis of trans-(±)-1,2,3,3a,4a,5,6,7-Octaphenyl- 3aH,4aH-dicyclopenta[b,e][1,4]dithiin by Dimerization and Further Rearrangement of the Transient 2,3,4,5-Tetraphenyl-2,4-cyclopentadiene-1-thione
Acta Chemica Scandinavica, 1998, 52, 950-957
1556968 CIFC8 H32 Al2 Cl2 O20P -16.956; 8.413; 10.737
89.78; 106.9; 95.25
598.5Karlsson, Magnus; Bostrom, Dan; Ohman, Lars-Olof
Equilibrium and Structural Studies of Silicon(IV) and Aluminium(III) in Aqueous Solution. 33. The Al(methylmalonate)2(H2O)2- Complex Crystallised as a Double Salt with Al(H2O)6(3+) and Cl-
Acta Chemica Scandinavica, 1998, 52, 995-999
1556969 CIFFe0.773 Mn0.228 Na0.8817 O4 PP b n m4.882; 10.387; 6.091
90; 90; 90
308.87Vignola, P.; Hatert, F.; Fransolet, A.-M.; Medenbach, O.; Diella, V.; Ando, S.
Karenwebberite, Na(Fe2+,Mn2+)PO4, a new member of the triphylite group from the Malpensata pegmatite, Lecco Province, Italy
American Mineralogist, 2013, 98, 762-772
1556970 CIFAs0.5 Fe H0.5 O4.5 S0.5I -15.1639; 5.1863; 12.9457
89.209; 89.675; 87.892
346.433Paktunc, D.; Majzlan, J.; Palatinus, L.; Dutrizac, J.; Klementova, M.; Poirier, G.
Characterization of ferric arsenate-sulfate compounds: Implications for arsenic control in refractory gold processing residues
American Mineralogist, 2013, 98, 554-565
1556971 CIFB3 H4 Mg3 Na O30 Si6 V6R 3 m :H16.1908; 16.1908; 7.4143
90; 90; 120
1683.21Bosi, F.; Reznitskii, L.Z.; Sklyarov, E.V.
Oxy-vanadium-dravite, NaV3(V4Mg2)(Si6O18)(BO3)3(OH)3O: Crystal structure and redefinition of the "vanadium-dravite" tourmaline
American Mineralogist, 2013, 98, 501-505
1556972 CIFAl7.94 Bi1.08 Ca16.74 Ce0.07 Cu0.1 Fe2.02 H7.55 Mg1.88 Mn0.47 O78 Pb0.11 Si17.84 Ti0.84P 4/n n c :215.7018; 15.7018; 11.8648
90; 90; 90
2925.2Halenius, U.; Bosi, F.; Gatedal, K.
Crystal structure and chemistry of skarn-associated bismuthian vesuvianite
American Mineralogist, 2013, 98, 566-573
1556973 CIFCa10 Cl F0.99 H2.53 O20.01 Si4.87C 1 2/c 17.5915; 18.5774; 15.4919
90; 104.668; 90
2113.62Gfeller, F.; Armbruster, T.; Galuskin, E.V.; Galuskina, I.O.; Lazic, B.; Savelyeva, V.B.; Zadov, A.E.; Dzierzanowski, P.; Gazeev, V.M.
Crystal chemistry and hydrogen bonding of rustumite Ca10(Si2O7)2(SiO4)(OH)2Cl2 with variable OH, Cl, F : low-Cl, F-bearing rustumite from Baika Lake area, Russia
American Mineralogist, 2013, 98, 493-500
1556974 CIFCa10 Cl1.96 F0.87 H1.17 O19.17 Si5C 1 2/c 17.641; 18.559; 15.537
90; 104.21; 90
2135.9Gfeller, F.; Armbruster, T.; Galuskin, E.V.; Galuskina, I.O.; Lazic, B.; Savelyeva, V.B.; Zadov, A.E.; Dzierzanowski, P.; Gazeev, V.M.
Crystal chemistry and hydrogen bonding of rustumite Ca10(Si2O7)2(SiO4)(OH)2Cl2 with variable OH, Cl, F : F-bearing rustumite from Upper Chegem Caldera, Russia
American Mineralogist, 2013, 98, 493-500
1556975 CIFCa10 Cl1.28 F0.12 H2.6 O20.6 Si5C 1 2/c 17.61428; 18.5772; 15.5714
90; 104.734; 90
2130.18Gfeller, F.; Armbruster, T.; Galuskin, E.V.; Galuskina, I.O.; Lazic, B.; Savelyeva, V.B.; Zadov, A.E.; Dzierzanowski, P.; Gazeev, V.M.
Crystal chemistry and hydrogen bonding of rustumite Ca10(Si2O7)2(SiO4)(OH)2Cl2 with variable OH, Cl, F : low Cl rustumite from Rize batholith, Turkey
American Mineralogist, 2013, 98, 493-500
1556976 CIFAl7 B3 Fe2 H3 Na O31 Si6R 3 m :H15.9853; 15.9853; 7.1538
90; 90; 120
1583.1Bacik, P.; Cempirek, J.; Uher, P.; Novak, M.; Ozdin, D.; Filip, J.; Skoda, R.; Breiter, K.; Klementova, M.; Duda, R.; Groat, L.A.
Oxy-schorl, Na(Fe2+2Al)Al6Si6O18(BO3)3(OH)3O, a new mineral from Zlata Idka, Slovak Republic and Pribyslavice, Czech Republic : sample from Pribyslavice
American Mineralogist, 2013, 98, 485-492
1556977 CIFAl7 B3 Fe2 H3 Na O31 Si6R 3 m :H15.916; 15.916; 7.1071
90; 90; 120
1559.2Bacik, P.; Cempirek, J.; Uher, P.; Novak, M.; Ozdin, D.; Filip, J.; Skoda, R.; Breiter, K.; Klementova, M.; Duda, R.; Groat, L.A.
Oxy-schorl, Na(Fe2+2Al)Al6Si6O18(BO3)3(OH)3O, a new mineral from Zlata Idka, Slovak Republic and Pribyslavice, Czech Republic : sample from Zlata Idka
American Mineralogist, 2013, 98, 485-492
1556978 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m16.959; 9.653; 9.217
90; 90; 90
1508.9Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 4.9 GPa
American Mineralogist, 2013, 98, 181-186
1556979 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m16.944; 9.656; 9.216
90; 90; 90
1507.8Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 4.4 GPa
American Mineralogist, 2013, 98, 181-186
1556980 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m17.104; 9.746; 9.333
90; 90; 90
1555.8Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 1 bar
American Mineralogist, 2013, 98, 181-186
1556981 CIFLa3 Li6.5 Nb0.5 O12 Zr1.5I a -3 d12.913; 12.913; 12.913
90; 90; 90
2153.2Kataoka, K.
Oxide single crystals with high lithium-ion conductivity as solid electrolytes for all-solid-state lithium secondary battery applications
Journal of the Ceramic Society of Japan, 2020, 128, 7-18
1556982 CIFLa3 Li6.5 O12 Ta0.5 Zr1.5I a -3 d12.9445; 12.9445; 12.9445
90; 90; 90
2168.98Kataoka, K.
Oxide single crystals with high lithium-ion conductivity as solid electrolytes for all-solid-state lithium secondary battery applications
Journal of the Ceramic Society of Japan, 2020, 128, 7-18
1556983 CIFC23 H19.35 N5 O4.18P 21 21 217.4338; 19.1874; 28.7281
90; 90; 90
4097.64Lin, Shuang; Yu, Huimin; Yang, Beiye; Li, Fengli; Chen, Xia; Li, Huaqiang; Zhang, Sitian; Wang, Jianping; Hu, Youcai; Hu, Zhengxi; Zhang, Yonghui
Reisolation and Configurational Reinvestigation of Cottoquinazolines E-G from an Arthropod-Derived Strain of the Fungus <i>Neosartorya fischeri</i>.
Journal of natural products, 2020, 83, 169-173
1556984 CIFC25 H25 N5 O5P 6113.718; 13.718; 21.48
90; 90; 120
3500.6Lin, Shuang; Yu, Huimin; Yang, Beiye; Li, Fengli; Chen, Xia; Li, Huaqiang; Zhang, Sitian; Wang, Jianping; Hu, Youcai; Hu, Zhengxi; Zhang, Yonghui
Reisolation and Configurational Reinvestigation of Cottoquinazolines E-G from an Arthropod-Derived Strain of the Fungus <i>Neosartorya fischeri</i>.
Journal of natural products, 2020, 83, 169-173
1556985 CIFC6 H12 N4 O8 P2 S2P 1 21/c 14.6777; 8.716; 17.1651
90; 91.394; 90
699.628Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4–)(H3PO4)]∞ Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556986 CIFC6 H20 N4 O16 P4 S2P 1 21/n 111.0254; 7.0847; 13.0691
90; 96.516; 90
1014.26Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4‒)(H3PO4)]∞Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556987 CIFC3 H6 N2 O4 P SP -15.40917; 7.805; 8.856
63.995; 84.123; 83.101
333.08Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4–)(H3PO4)]∞ Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556988 CIFC3 H9 N2 O8 P2 SP -15.26221; 8.96277; 10.8217
97.609; 95.9417; 98.5964
496.242Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4–)(H3PO4)]∞ Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556989 CIFC6 H9 N4 O4 P S2P 1 21/c 113.8433; 10.0451; 8.1208
90; 95.19; 90
1124.63Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4–)(H3PO4)]∞ Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556990 CIFC3 Na4 O11 UC 1 c 19.2919; 16.0991; 6.4436
90; 91.404; 90
963.62Plasil, J.; Fejfarova, K.; Dusek, M.; Skoda, R.; Rohlicek, J.
Revision of the symmetry and the crystal structure of cejkaite, Na4(UO2)(CO3)3
American Mineralogist, 2013, 98, 549-553
1556991 CIFAs4 Br0.3 Cl0.5 F0.2 H1.92 K0.52 N0.48 O6P 6/m m m5.2386; 5.2386; 9.014
90; 90; 120
214.23Garavelli, A.; Mitolo, D.; Pinto, D.; Vurro, F.
Lucabindiite, (K,NH4)As4O6(Cl,Br), a new fumarole mineral from the "La Fossa" crater at Vulcano, Aeolian Islands, Italy
American Mineralogist, 2013, 98, 470-477
1556992 CIFC18 H16 O4P b c n9.7263; 11.8883; 24.935
90; 90; 90
2883.2Liang, Kangjiang; Li, Tao; Li, Na; Zhang, Yang; Shen, Lei; Ma, Zhixian; Xia, Chengfeng
Redox-neutral photochemical Heck-type arylation of vinylphenols activated by visible light
Chemical Science, 2020, 11, 2130-2135
1556993 CIFC26 H24 N2 O2 SP -110.6565; 11.1408; 12.3
69.374; 76.912; 65.303
1236.26Lee, Jiyoun; Ko, Donguk; Park, Hyunju; Yoo, Eun Jeong
Direct cyclopropanation of activated N-heteroarenes <i>via</i> site- and stereoselective dearomative reactions.
Chemical science, 2020, 11, 1672-1676
1556994 CIFC28 H26 N2P 21 21 219.072; 9.846; 23.918
90; 90; 90
2136.4Lee, Jiyoun; Ko, Donguk; Park, Hyunju; Yoo, Eun Jeong
Direct cyclopropanation of activated N-heteroarenes <i>via</i> site- and stereoselective dearomative reactions.
Chemical science, 2020, 11, 1672-1676
1556995 CIFC54 H31.2 F0.8 O8 Zn2C 1 2/c 137.1066; 31.0733; 11.8903
90; 99.208; 90
13533.1Lustig, William P.; Shen, Zeqing; Teat, Simon J.; Javed, Nasir; Velasco, Ever; O'Carroll, Deirdre M.; Li, Jing
Rational design of a high-efficiency, multivariate metal‒organic framework phosphor for white LED bulbs
Chemical Science, 2020, 11, 1814-1824
1556996 CIFCa H14 O24 Si5 U2P b c n18.3; 14.2331; 17.9192
90; 90; 90
4667.3Plasil, J.; Fejfarova, K.; Cejka, J.; Dusek, M.; Skoda, R.; Sejkora, J.
Revision of the crystal structure and chemical formula of haiweeite, Ca(UO2)2(Si5O12)(OH)2*6H2O
American Mineralogist, 2013, 98, 718-723
1556997 CIFAl1.15 Cr0.05 F0.03 Fe0.35 H1.3292 K0.92 Mg2.28 Na0.04 Ni0.01 O11.97 Si2.89 Ti0.27P 31 1 25.3235; 5.3235; 30.188
90; 90; 120
740.9Schingaro, E.; Lacalamita, M.; Scordari, F.; Mesto, E.
3T-phlogopite from Kasenyi kamafugite (SW Uganda): EPMA, XPS, FTIR, and SCXRD study
American Mineralogist, 2013, 98, 709-717
1556998 CIFAl Ca0.01 K0.01 Na1.01 O8 Si2.98C -18.133; 12.81; 7.171
94.1; 116.59; 87.79
666.4Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : albite sample 16
American Mineralogist, 2013, 98, 41-52
1556999 CIFAl0.99 Fe0.01 K0.01 Na1.02 O8 Si2.99C -18.166; 12.845; 7.188
94.24; 116.59; 87.715
672.4Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : albite sample 45
American Mineralogist, 2013, 98, 41-52
1557000 CIFAl K0.86 Na0.17 O8 Si2.99C -18.598; 12.97; 7.2
90.029; 116.137; 89.498
720.8Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : K-feldspar sample 16
American Mineralogist, 2013, 98, 41-52
1557001 CIFAl0.99 K Na0.04 O8 Si3C -18.585; 12.979; 7.2282
90.512; 115.914; 87.711
723.8Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : K-feldspar sample 45
American Mineralogist, 2013, 98, 41-52
1557002 CIFD1.96 H0.04 Mg O2P -3 m 13.14291; 3.14291; 4.72398
90; 90; 120
40.4113Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 20 K
American Mineralogist, 2013, 98, 1-6
1557003 CIFD1.96 H0.04 Mg O2P -3 m 13.14289; 3.14289; 4.72413
90; 90; 120
40.412Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 30 K
American Mineralogist, 2013, 98, 1-6
1557004 CIFD1.96 H0.04 Mg O2P -3 m 13.14282; 3.14282; 4.7243
90; 90; 120
40.4117Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 40 K
American Mineralogist, 2013, 98, 1-6
1557005 CIFD1.96 H0.04 Mg O2P -3 m 13.14287; 3.14287; 4.72506
90; 90; 120
40.4195Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 50 K
American Mineralogist, 2013, 98, 1-6
1557006 CIFD1.96 H0.04 Mg O2P -3 m 13.1431; 3.1431; 4.72562
90; 90; 120
40.4302Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 60 K
American Mineralogist, 2013, 98, 1-6
1557007 CIFD1.96 H0.04 Mg O2P -3 m 13.14297; 3.14297; 4.7264
90; 90; 120
40.4335Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 70 K
American Mineralogist, 2013, 98, 1-6
1557008 CIFD1.96 H0.04 Mg O2P -3 m 13.14312; 3.14312; 4.72688
90; 90; 120
40.4415Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 80 K
American Mineralogist, 2013, 98, 1-6
1557009 CIFD1.96 H0.04 Mg O2P -3 m 13.14311; 3.14311; 4.7277
90; 90; 120
40.4482Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 90 K
American Mineralogist, 2013, 98, 1-6
1557010 CIFD1.96 H0.04 Mg O2P -3 m 13.14294; 3.14294; 4.72821
90; 90; 120
40.4482Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 100 K
American Mineralogist, 2013, 98, 1-6
1557011 CIFD1.96 H0.04 Mg O2P -3 m 13.14304; 3.14304; 4.7298
90; 90; 120
40.4644Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 120 K
American Mineralogist, 2013, 98, 1-6
1557012 CIFD1.96 H0.04 Mg O2P -3 m 13.1433; 3.1433; 4.73246
90; 90; 120
40.4939Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 150 K
American Mineralogist, 2013, 98, 1-6
1557013 CIFD1.96 H0.04 Mg O2P -3 m 13.14385; 3.14385; 4.73856
90; 90; 120
40.56Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 200 K
American Mineralogist, 2013, 98, 1-6
1557014 CIFD1.96 H0.04 Mg O2P -3 m 13.14597; 3.14597; 4.75387
90; 90; 120
40.746Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 295 K
American Mineralogist, 2013, 98, 1-6
1557015 CIFAg1.02 As0.06 Bi1.47 Pb0.87 S5.94 Sb1.54P 1 21/c 16.9764; 19.351; 8.387
90; 107.519; 90
1079.73Yang, H.; Downs, R.T.; Evans, S.H.; Pinch, W.W.
Terrywallaceite, AgPb(Sb,Bi)3S6, isotypic with gustavite, a new mineral from in a Herminia, Julcani Mining District, Huancavelica, Peru
American Mineralogist, 2013, 98, 1310-1314
1557016 CIFC22 H30 O2P 1 21/n 19.223; 6.718; 15.694
90; 90.983; 90
972.3Shu, Zhibin; Zhang, Qing; Zhang, Pan; Qin, Zhengsheng; Liu, Dan; Gao, Xiong; Guan, Bo; Qi, Haoyuan; Xiao, Mengqi; Wei, Zhongming; Dong, Huanli; Hu, Wenping
Preparing two-dimensional crystalline conjugated polymer films by synergetic polymerization and self-assembly at air/water interface
Polymer Chemistry, 2020, 11, 1572-1579
1557017 CIFC40 H33 Cl P2 Pt SP -112.139; 12.706; 13.335
90.44; 115; 108.81
1739.5Oilunkaniemi, Raija; Niiranen, Marjaana; Laitinen, Risto S.; Ahlgren, Markku; Pursiainen, Jouni
Crystal and Molecular Structure of trans-Chlorobis(triphenylphosphine)(2-thienyl) Platinum(II)
Acta Chemica Scandinavica, 1998, 52, 1068-1070
1557018 CIFC9 H14 Br3 N Se2P 1 21/c 18.618; 12.914; 13.609
90; 95.13; 90
1508.5Hauge, Sverre; Janickis, Vitalijus; Maroy, Kjartan
Syntheses and Crystal Structures of Salts of Hexabromotetraselenate(I) and Hexabromoselenate(IV)bis{dibromodiselenate(I)}
Acta Chemica Scandinavica, 1998, 52, 1104-1108
1557019 CIFC10 H16 Br3 N Se2P 1 21/c 18.417; 12.673; 14.813
90; 97.06; 90
1568.1Hauge, Sverre; Janickis, Vitalijus; Maroy, Kjartan
Syntheses and Crystal Structures of Salts of Hexabromotetraselenate(I) and Hexabromoselenate(IV)bis{dibromodiselenate(I)}
Acta Chemica Scandinavica, 1998, 52, 1104-1108
1557020 CIFC18 H28 Br10 N2 Se5P 1 21/n 18.683; 12.762; 16.34
90; 104.29; 90
1754.7Hauge, Sverre; Janickis, Vitalijus; Maroy, Kjartan
Syntheses and Crystal Structures of Salts of Hexabromotetraselenate(I) and Hexabromoselenate(IV)bis{dibromodiselenate(I)}
Acta Chemica Scandinavica, 1998, 52, 1104-1108
1557021 CIFC10 H16 Al Na O10R -3 :H12.046; 12.046; 28.705
90; 90; 120
3607.2Karlsson, Magnus; Bostrom, Dan; Clausen, Maria; Ohman, Lars-Olof
Equilibrium and Structural Studies of Silicon(IV) and Aluminium(III) in Aqueous Solution. 34. A Crystal Structure Determination of the Al(methylmalonate)2(CH3OH)2- Complex with Na+ as Counter-Ion
Acta Chemica Scandinavica, 1998, 52, 1116-1121
1557022 CIFC4 H18 Br5 N3 Pb S2P 1 21 110.066; 8.4068; 10.9787
90; 104.155; 90
900.8Bakthavatsalam, Rangarajan; Haris, Muhammed P. U.; Shaikh, Samir R.; Lohar, Amruta; Mohanty, Ashutosh; Moghe, Dhanashree; Sharma, Shivani; Biswas, Chinmoy; Raavi, Sai Santhosh Kumar; Gonnade, Rajesh G.; Kundu, Janardan
Ligand Structure Directed Dimensionality Reduction (2D →1D) in Lead Bromide Perovskite
The Journal of Physical Chemistry C, 2020
1557023 CIFC3 H11 Br4 N3 Pb SP 1 21/c 113.3113; 8.5838; 12.0368
90; 90.406; 90
1375.31Bakthavatsalam, Rangarajan; Haris, Muhammed P. U.; Shaikh, Samir R.; Lohar, Amruta; Mohanty, Ashutosh; Moghe, Dhanashree; Sharma, Shivani; Biswas, Chinmoy; Raavi, Sai Santhosh Kumar; Gonnade, Rajesh G.; Kundu, Janardan
Ligand Structure Directed Dimensionality Reduction (2D →1D) in Lead Bromide Perovskite
The Journal of Physical Chemistry C, 2020
1557024 CIFC38 H34 S4C 1 2/c 141.708; 5.7563; 12.67
90; 98.46; 90
3008.8Suzuki, Mitsuharu; Terai, Kengo; Quinton, Cassandre; Hayashi, Hironobu; Aratani, Naoki; Yamada, Hiroko
Open-circuit-voltage shift of over 0.5 V in organic photovoltaic cells induced by a minor structural difference in alkyl substituents
Chemical Science, 2020, 11, 1825-1831
1557025 CIFC42 H42 S4P 1 21/c 123.82; 5.837; 12.5
90; 104.133; 90
1685Suzuki, Mitsuharu; Terai, Kengo; Quinton, Cassandre; Hayashi, Hironobu; Aratani, Naoki; Yamada, Hiroko
Open-circuit-voltage shift of over 0.5 V in organic photovoltaic cells induced by a minor structural difference in alkyl substituents
Chemical Science, 2020, 11, 1825-1831
1557026 CIFC42 H42 S4P 1 21/c 122.15; 5.7413; 13.1188
90; 95.85; 90
1659.6Suzuki, Mitsuharu; Terai, Kengo; Quinton, Cassandre; Hayashi, Hironobu; Aratani, Naoki; Yamada, Hiroko
Open-circuit-voltage shift of over 0.5 V in organic photovoltaic cells induced by a minor structural difference in alkyl substituents
Chemical Science, 2020, 11, 1825-1831
1557027 CIFC66 H30 Al3 Ba F89 O9P 1 c 128.173; 16.4313; 20.453
90; 90.107; 90
9468.1Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557028 CIFC52 H26 Al2 Ca F68 O7P 1 21 117.765; 20.654; 20.031
90; 93.018; 90
7340Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557029 CIFC36 H18 Al2 F55 In O6P -110.6319; 22.3961; 24.4869
79.144; 79.696; 77.759
5537.2Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557030 CIFC50 H22 Al2 F74 Mg N6 O8P 114.3953; 18.2606; 25.8315
73.784; 74.37; 66.821
5895.1Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557031 CIFC84 H34 Al4 F118 O12 SrP -113.8661; 20.2883; 23.0336
80.031; 85.985; 79.942
6278.6Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557032 CIFC84 H34 Al4 Ca F118 O12P -113.9542; 20.3286; 22.9128
80.085; 84.743; 80.239
6296.8Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557033 CIFC60 H26 Al3 Ca F87 O9P 1 21/c 123.429; 18.9075; 22.4874
90; 118.27; 90
8773.4Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557034 CIFC66 H30 Al3 F89 O9 SrP -113.5412; 25.3825; 27.3385
90.017; 90.111; 92.474
9387.7Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557035 CIFC12 H58 Cr Mo6 N3 O32P 1 21/n 114.421; 11.263; 28.954
90; 99.7; 90
4636Wery, Ana S. J.; Gutierrez-Zorrilla, Juan M.; Luque, Antonio; Ugalde, Maria; Roman, Pascual; Lezama, Luis; Rojo, Teofilo
Synthesis, Crystal Structure, and Vibrational and Electron Spin Resonance Study of tert-Butylammonium Chromohexamolybdates, [(CH3)3CNH3]n[H(9-n)CrMo6O24].mH2O (n = 2, m = 2; n = 3, m = 8). Effects of Degrees of Protonation and Hydration
Acta Chemica Scandinavica, 1998, 52, 1194-1201
1557036 CIFC8 H35 Cr Mo6 N2 O26C 1 2/c 127.923; 11.191; 11.783
90; 102.15; 90
3599.5Wery, Ana S. J.; Gutierrez-Zorrilla, Juan M.; Luque, Antonio; Ugalde, Maria; Roman, Pascual; Lezama, Luis; Rojo, Teofilo
Synthesis, Crystal Structure, and Vibrational and Electron Spin Resonance Study of tert-Butylammonium Chromohexamolybdates, [(CH3)3CNH3]n[H(9-n)CrMo6O24].mH2O (n = 2, m = 2; n = 3, m = 8). Effects of Degrees of Protonation and Hydration
Acta Chemica Scandinavica, 1998, 52, 1194-1201
1557037 CIFC5 H15 Cd I2 N3P 1 21/n 17.8814; 10.0188; 16.1304
90; 101.448; 90
1248.35Mondal, Arunendu; Chaudhuri, Siddhartha; Ghosh, Ashutosh; Laskar, Inamur Rahaman; Chaudhuri, Nirmalendu Ray
Synthesis, Characterization and Thermal Studies of Bis(2-aminoethyl)methylamine(medien) Complexes of Cadmium(II). Single Crystal Structure of Cd(medien)I2
Acta Chemica Scandinavica, 1998, 52, 1202-1208
1557038 CIFC20 H32 O4P 21 21 219.3134; 11.3699; 17.7933
90; 90; 90
1884.2Eklund, Ann-Marie; Forsblom, Ingrid; Berg, Jan-Eric; Damberg, Charlotta; Wahlberg, Inger
Tobacco Chemistry. 83. Four New Cyclized Cembranoids from Tobacco
Acta Chemica Scandinavica, 1998, 52, 1254-1262
1557039 CIFC20 H32 O4P 21 21 2114.419; 15.8566; 17.355
90; 90; 90
3968Eklund, Ann-Marie; Forsblom, Ingrid; Berg, Jan-Eric; Damberg, Charlotta; Wahlberg, Inger
Tobacco Chemistry. 83. Four New Cyclized Cembranoids from Tobacco
Acta Chemica Scandinavica, 1998, 52, 1254-1262
1557040 CIFC17 H10 Br2 N2 OP 1 21/n 110.0349; 8.3874; 17.4347
90; 91.005; 90
1467.2Sala, Samuele; Nealon, Gareth L.; Sobolev, Alexandre N.; Fromont, Jane; Gomez, Oliver; Flematti, Gavin R.
Structure Reassignment of Echinosulfone A and the Echinosulfonic Acids A-D Supported by Single-Crystal X-ray Diffraction and Density Functional Theory Analysis.
Journal of natural products, 2020, 83, 105-110
1557041 CIFC40 H49 Br N2 OP 1 21/n 111.1088; 21.1979; 15.9518
90; 108.641; 90
3559.32Rottschäfer, Dennis; Glodde, Timo; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
A crystalline C5-protonated 1,3-imidazol-4-ylidene.
Chemical communications (Cambridge, England), 2020, 56, 2027-2030
1557042 CIFC42 H44 N2 Ni O3P -110.35522; 11.18263; 16.4194
100.307; 95.6535; 99.0466
1831.63Rottschäfer, Dennis; Glodde, Timo; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
A crystalline C5-protonated 1,3-imidazol-4-ylidene.
Chemical communications (Cambridge, England), 2020, 56, 2027-2030
1557043 CIFC46 H52 Au Cl N2P 1 21/c 112.2795; 16.812; 19.2885
90; 93.6946; 90
3973.7Rottschäfer, Dennis; Glodde, Timo; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
A crystalline C5-protonated 1,3-imidazol-4-ylidene.
Chemical communications (Cambridge, England), 2020, 56, 2027-2030
1557044 CIFC39 H44 N2I 41/a :238.4682; 38.4682; 9.5772
90; 90; 90
14172.4Rottschäfer, Dennis; Glodde, Timo; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
A crystalline C5-protonated 1,3-imidazol-4-ylidene.
Chemical communications (Cambridge, England), 2020, 56, 2027-2030
1557045 CIFC17 H14 Cl N O2P 21 21 215.3182; 10.94; 23.9705
90; 90; 90
1394.63Burg, Finn; Breitenlechner, Stefan; Jandl, Christian; Bach, Thorsten
Enantioselective oxygenation of exocyclic methylene groups by a manganese porphyrin catalyst with a chiral recognition site
Chemical Science, 2020, 11, 2121-2129
1557046 CIFC12 H35 Cl4 Cr2 N8 Na O18P 1 21/a 114.417; 18.045; 23.48
90; 90.244; 90
6108.4Andersen, Peter; Bengaard, Hanne; Glerup, Jorgen; Gumm, Andreas; Larsen, Sine
Synthesis and Characterization of a Dinuclear Chromium(III) Complex with Two Amido Bridges and One Hydroxo Bridge. Crystal Structure of Na[(tacn)Cr(mu-NH2)2(mu-OH)Cr(tacn)](ClO4)4.H2O (tacn = 1,4,7-Triazacyclononane)
Acta Chemica Scandinavica, 1998, 52, 1313-1321
1557047 CIFC41 H38 Cd Cl3 N8 O14P 1 2 111.7365; 11.7808; 16.851
90; 92.386; 90
2327.9Liu, Cai-Ming; Xiong, Ren-Gen; You, Xiao-Zeng; Chen, Wei
A Two-Dimensional Square Network Inclusion Compound Incorporating Guest Molecules Through Both Hydrogen Bonding and Nonionic Electrostatic Attraction. Crystal Structure of [Cd(4,4'-bpy)2(H2O)2]-(ClO4)2.1.5(4,4'-bpy).(C6H4NO3Cl).H2O
Acta Chemica Scandinavica, 1998, 52, 1353-1358
1557048 CIFC14 H40 N6 O16P -18.626; 9.361; 9.385
66.02; 71.95; 86.7
656.3Roman, Pascual; Guzman-Miralles, Carmen; Luque, Antonio; Beitia, Javier I.
Synthesis, Crystal Structure and Thermal Behaviour of the Diethylenetriammonium Oxalate-Water (1/4), (H3dien)2(ox)3.4H2O
Acta Chemica Scandinavica, 1997, 51, 13-18
1557049 CIFC15 H32 N2 O4P 1 21 18.6404; 24.6286; 9.367
90; 115.175; 90
1803.97Gorbitz, Carl Henrik
Solvent Site Preferences in the Crystal Structures of L-Leucyl-L-leucine Alcohol (1:1) Complexes
Acta Chemica Scandinavica, 1998, 52, 1343-1352
1557050 CIFC15 H32 N2 O4P 1 21 18.7343; 23.998; 9.448
90; 115.267; 90
1790.89Gorbitz, Carl Henrik
Solvent Site Preferences in the Crystal Structures of L-Leucyl-L-leucine Alcohol (1:1) Complexes
Acta Chemica Scandinavica, 1998, 52, 1343-1352
1557051 CIFC14 H30 N2 O4P 1 21 18.6634; 24.0971; 9.3265
90; 115.379; 90
1759.12Gorbitz, Carl Henrik
Solvent Site Preferences in the Crystal Structures of L-Leucyl-L-leucine Alcohol (1:1) Complexes
Acta Chemica Scandinavica, 1998, 52, 1343-1352
1557052 CIFC22 H28 NP -15.899; 7.547; 20.535
83.465; 84.681; 82.512
897.7Mongin, Cédric; Ardoy, Alejandro Mendez; Méreau, Raphaël; Bassani, Dario M.; Bibal, Brigitte
Singlet oxygen stimulus for switchable functional organic cages
Chemical Science, 2020, 11, 1478-1484
1557053 CIFC28 H18 O2P 1 21/c 113.0175; 9.329; 8.3512
90; 106.37; 90
973.06Mongin, Cédric; Ardoy, Alejandro Mendez; Méreau, Raphaël; Bassani, Dario M.; Bibal, Brigitte
Singlet oxygen stimulus for switchable functional organic cages
Chemical Science, 2020, 11, 1478-1484
1557054 CIFC20 H14 I NP c c n16.5305; 18.7386; 10.5281
90; 90; 90
3261.2Martinez, Thibaut; Alahyen, Ismail; Lemière, Gilles; Mouriès-Mansuy, Virginie; Fensterbank, Louis
Straightforward Access to 2-Iodoindolizines via Iodine-Mediated Cyclization of 2-Pyridylallenes
Organic Process Research & Development, 2020
1557055 CIFC20 H21 B Cl2 O2C 1 2/c 127.001; 6.0841; 25.1455
90; 108.298; 90
3922Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557056 CIFC22 H27 B O2C 1 2/c 135.07; 6.2286; 20.596
90; 119.212; 90
3926.8Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557057 CIFC22 H27 B O2P c a 2125.447; 6.3811; 24.281
90; 90; 90
3942.7Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557058 CIFC36.5 H57 B Cl F4 N4 P4 RhP 31 2 113.824; 13.824; 40.089
90; 90; 120
6635Cunillera, Anton; de los Bernardos, Miriam Díaz; Urrutigoïty, Martine; Claver, Carmen; Ruiz, Aurora; Godard, Cyril
Efficient synthesis of chiral γ-aminobutyric esters via direct rhodium-catalysed enantioselective hydroaminomethylation of acrylates
Catalysis Science & Technology, 2020, 10, 630-634
1557059 CIFC27 H42 B Cl2 F4 N2 P2 RhP 1 21 19.7105; 14.3281; 11.2851
90; 96.031; 90
1561.44Cunillera, Anton; de los Bernardos, Miriam Díaz; Urrutigoïty, Martine; Claver, Carmen; Ruiz, Aurora; Godard, Cyril
Efficient synthesis of chiral γ-aminobutyric esters via direct rhodium-catalysed enantioselective hydroaminomethylation of acrylates
Catalysis Science & Technology, 2020, 10, 630-634
1557060 CIFC18 H19 N S SiP -18.52831; 10.39109; 11.21545
117.584; 92.3119; 95.1854
873.5Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557061 CIFC17 H13 N O SC 1 2/c 120.6204; 9.4103; 16.7239
90; 120.205; 90
2804.6Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557062 CIFC18 H15 N O SP b c a13.1964; 13.3812; 16.7048
90; 90; 90
2949.79Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557063 CIFC11 H9 N O SP 1 21/c 110.9143; 7.26579; 12.4737
90; 104.425; 90
957.99Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557064 CIFC16 H21 N S Se SiP 1 21/c 110.6588; 8.0663; 20.1272
90; 95.886; 90
1721.35Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557065 CIFC22 H23 N SP 1 21/c 113.9373; 7.7203; 17.0136
90; 105.984; 90
1759.89Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557066 CIFC21 H20 SP 1 21/n 17.5133; 25.6215; 8.2645
90; 100.591; 90
1563.83Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557067 CIFC10 H7 N SP -16.9027; 7.3743; 9.3503
68.861; 73.292; 84.246
425.18Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557068 CIFC16 H11 N O SP b c a12.2557; 9.5626; 21.5616
90; 90; 90
2526.94Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557069 CIFC17 H17 N SP 1 21/c 111.1885; 11.263; 12.1884
90; 116.756; 90
1371.48Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557070 CIFC9 H10 Cl3 N5 O2P n m a28.008; 6.738; 7.291
90; 90; 90
1375.9Dahl, Tor; Rasmussen, Inge
Crystal Structures of N(6),N(6)-Dimethyladeninium Trichloroacetate and N(6)-Methyladeninium Dinitrate.
Acta Chemica Scandinavica, 1997, 51, 19-23
1557071 CIFC6 H9 N7 O6P 1 21/c 16.428; 20.269; 16.918
90; 98.56; 90
2179.7Dahl, Tor; Rasmussen, Inge
Crystal Structures of N(6),N(6)-Dimethyladeninium Trichloroacetate and N(6)-Methyladeninium Dinitrate.
Acta Chemica Scandinavica, 1997, 51, 19-23
1557072 CIFC20 H40 Cl5 Li O5 ZrP 1 21/c 110.466; 16.361; 17.645
90; 105.59; 90
2910Polamo, Mika; Leskela, Markku
Formation of Tetrahydrofuran Adducts of LiZrCl5 in the Reaction of Li(NPh2) and ZrCl4: Crystal Structures of [Li(thf)4][ZrCl5(thf)] and Li(thf)3-mu-Cl-ZrCl4(thf).
Acta Chemica Scandinavica, 1997, 51, 44-48
1557073 CIFC16 H32 Cl5 Li O4 ZrP 1 21/n 111.32; 17.686; 13.622
90; 90.37; 90
2727Polamo, Mika; Leskela, Markku
Formation of Tetrahydrofuran Adducts of LiZrCl5 in the Reaction of Li(NPh2) and ZrCl4: Crystal Structures of [Li(thf)4][ZrCl5(thf)] and Li(thf)3-mu-Cl-ZrCl4(thf).
Acta Chemica Scandinavica, 1997, 51, 44-48
1557074 CIFC44 H36 Hf N8C 1 2/c 124.213; 7.916; 20.432
90; 112.01; 90
3631Polamo, Mika; Leskela, Markku
Synthesis and Crystal Structure of an 8-Coordinated Tetrakis[2-(phenylamido)pyridine]hafnium(IV) and Comparison with a 4-Coordinated Tetrakis(diphenylamido)hafnium(IV)
Acta Chemica Scandinavica, 1997, 51, 69-72
1557075 CIFC55 H67 N3 O6 P2 RuP 1 21/n 117.5623; 13.934; 20.8795
90; 92.113; 90
5106Artús Suàrez, Lluís; Jayarathne, Upul; Balcells, David; Bernskoetter, Wesley H.; Hazari, Nilay; Jaraiz, Martín; Nova, Ainara
Rational selection of co-catalysts for the deaminative hydrogenation of amides.
Chemical science, 2020, 11, 2225-2230
1557076 CIFC9 H10 N4 O9P -16.097; 10.29; 11.188
73.23; 86.8; 83.91
668Butts, Craig P.; Eberson, Lennart; Hartshorn, Michael P.; Robinson, Ward T.; Timmerman-Vaughan, David J.
Photochemical Nitration by Tetranitromethane. Part XXXVII. Adduct Formation and the Regiochemistry of Attack of Trinitromethanide Ion on Radical Cations in the Photochemical Reactions of 2-Methyl-, 2,3-Dimethyl- and 2,4-Dimethylanisoles
Acta Chemica Scandinavica, 1997, 51, 73-87
1557077 CIFC14 H14 Cu N4 O7P 1 21/c 17.662; 20.359; 11.642
90; 117.6; 90
1609Heldal, H. E.; Sletten, J.
Crystal Structure of Aquadinitrato(2,9-dimethyl-1,10-phenanthroline)copper(II)
Acta Chemica Scandinavica, 1997, 51, 122-124
1557078 CIFNa2 O6 Si2 ZnC 1 2/c 16.176; 9.413; 9.79
90; 93.7; 90
567.95Grins, Jekabs; Werner, Per-Erik; Kanno, Yoshinori
Determination of the Substructure of Na2ZnSi2O6, Synthesized in the Solid State
Acta Chemica Scandinavica, 1997, 51, 259-263
1557079 CIFC25 H23 N O3P 1 21 112.77764; 5.95718; 12.86001
90; 100.546; 90
962.352Di Sanza, Riccardo; Nguyen, Thi Le Nhon; Iqbal, Naeem; Argent, Stephen P.; Lewis, William; Lam, Hon Wai
Enantioselective nickel-catalyzed arylative and alkenylative intramolecular 1,2-allylations of tethered allene–ketones
Chemical Science, 2020, 11, 2401-2406
1557080 CIFC23 H29 N O2P 21 21 2110.3193; 10.5258; 18.2046
90; 90; 90
1977.36Di Sanza, Riccardo; Nguyen, Thi Le Nhon; Iqbal, Naeem; Argent, Stephen P.; Lewis, William; Lam, Hon Wai
Enantioselective nickel-catalyzed arylative and alkenylative intramolecular 1,2-allylations of tethered allene–ketones
Chemical Science, 2020, 11, 2401-2406
1557081 CIFC25 H25 N O3 SP 21 21 215.909; 12.8175; 27.4929
90; 90; 90
2082.27Di Sanza, Riccardo; Nguyen, Thi Le Nhon; Iqbal, Naeem; Argent, Stephen P.; Lewis, William; Lam, Hon Wai
Enantioselective nickel-catalyzed arylative and alkenylative intramolecular 1,2-allylations of tethered allene–ketones
Chemical Science, 2020, 11, 2401-2406
1557082 CIFC24 H18 O3C 1 2/c 121.613; 12.1859; 13.5922
90; 104.043; 90
3472.8He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557083 CIFC26 H24 O6P 1 21/c 114.145; 7.441; 24.56
90; 96.17; 90
2570He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557084 CIFC22 H15 Cl O3P 1 21/n 116.2589; 6.7715; 16.4568
90; 106.511; 90
1737.14He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557085 CIFC25 H24 O7P 1 21/n 112.5579; 5.2167; 35.021
90; 94.917; 90
2285.8He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557086 CIFC25 H28 O8C 1 2/c 129.9022; 11.0935; 13.4816
90; 99.73; 90
4407.8He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557087 CIFC39 H34 F6 N3 O PP 1 21/c 19.3923; 29.4208; 11.9664
90; 102.511; 90
3228.14Zheng, Zheng; Liu, Haixiang; Zhai, Shaodong; Zhang, Haoke; Shan, Guogang; Kwok, Ryan T. K.; Ma, Chao; Sung, Herman H. Y.; Williams, Ian D.; Lam, Jacky W. Y.; Wong, Kam Sing; Hu, Xianglong; Tang, Ben Zhong
Highly efficient singlet oxygen generation, two-photon photodynamic therapy and melanoma ablation by rationally designed mitochondria-specific near-infrared AIEgens
Chemical Science, 2020, 11, 2494-2503
1557088 CIFC27 H22 N2 OP 1 21/n 19.53897; 23.141; 9.5721
90; 107.33; 90
2017.04Zheng, Zheng; Liu, Haixiang; Zhai, Shaodong; Zhang, Haoke; Shan, Guogang; Kwok, Ryan T. K.; Ma, Chao; Sung, Herman H. Y.; Williams, Ian D.; Lam, Jacky W. Y.; Wong, Kam Sing; Hu, Xianglong; Tang, Ben Zhong
Highly efficient singlet oxygen generation, two-photon photodynamic therapy and melanoma ablation by rationally designed mitochondria-specific near-infrared AIEgens
Chemical Science, 2020, 11, 2494-2503
1557089 CIFC78 H190 Dy2 K2 N6 O21 Si12C 1 2/c 125.4899; 18.8304; 25.7453
90; 103.128; 90
12034.4Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557090 CIFC42 H102 Dy K N3 O12 Si6P 1 21/n 111.0616; 27.199; 21.7721
90; 103.885; 90
6359Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557091 CIFC78 H190 K2 N6 O21 Si12 Tm2C 1 2/c 125.453; 18.757; 25.744
90; 103.142; 90
11969Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557092 CIFC42 H102 K N3 O12 Si6 TmP 21 21 2121.956; 22.554; 25.737
90; 90; 90
12745Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557093 CIFC52 H124 Gd2 K2 N4 O16 Si8P -112.6614; 15.5498; 21.205
94.4758; 94.0831; 105.746
3987.4Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557094 CIFC36 H90 Gd K N5 O6 Si6R 3 2 :H18.564; 18.564; 18.05
90; 90; 120
5387Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557095 CIFC42 H102 Er K N3 O12 Si6P 1 21/n 111.064; 27.08; 21.797
90; 103.991; 90
6337Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557096 CIFC42 H102 Ho K N3 O12 Si6P 1 21/n 111.0476; 27.157; 21.797
90; 103.905; 90
6347.9Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557097 CIFC42 H102 Gd K N3 O12 Si6P 1 21/n 111.1493; 27.059; 21.755
90; 104.007; 90
6368.1Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557098 CIFC42 H102 K N3 O12 Si6 TbP 1 21/n 111.1324; 27.081; 21.775
90; 103.924; 90
6371.8Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557099 CIFC78 H190 Gd2 K2 N6 O21 Si12C 1 2/c 125.507; 18.806; 25.726
90; 103.21; 90
12014Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557100 CIFC42 H102 K N3 O12 Si6 YP 1 21/n 111.0774; 27.0905; 21.7959
90; 104; 90
6346.5Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557101 CIFC78 H190 Ho2 K2 N6 O21 Si12C 1 2/c 125.514; 18.8; 25.712
90; 103.167; 90
12009Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557102 CIFH9 N2 O8.5 Se2 UP 1 21/c 17.193; 10.368; 13.823
90; 91.47; 90
1030.5Koskenlinna, Markus; Mutikainen, Ilpo; Leskela, Tuula; Leskela, Markku
Low-Temperature Crystal Structures and Thermal Decomposition of Uranyl Hydrogen Selenite Monohydrate, UO2(HSeO3)2.H2O and Diammonium Uranyl Selenite Hemihydrate, (NH4)2UO2(SeO3)2.0.5H2O
Acta Chemica Scandinavica, 1997, 51, 264-269
1557103 CIFH4 O9 Se2 UC 1 2/c 19.924; 12.546; 6.324
90; 98.09; 90
779.5Koskenlinna, Markus; Mutikainen, Ilpo; Leskela, Tuula; Leskela, Markku
Low-Temperature Crystal Structures and Thermal Decomposition of Uranyl Hydrogen Selenite Monohydrate, UO2(HSeO3)2.H2O and Diammonium Uranyl Selenite Hemihydrate, (NH4)2UO2(SeO3)2.0.5H2O
Acta Chemica Scandinavica, 1997, 51, 264-269
1557104 CIFC20 H20 N2 Ni O2P 1 21 110.964; 12.735; 12.329
90; 95.26; 90
1714.2Wojtczak, A.; Szlyk, E.; Jaskolski, M.; Larsen, E.
An Optically Active Nickel(II) Schiff Base Coordination Compound N,N'-(1R,2R)-(-)-1,2-Cyclohexylenebis(salicylideneiminato)nickel(II)
Acta Chemica Scandinavica, 1997, 51, 274-278
1557105 CIFC104 H96 B4 F16 N8 O4 Pd2I 1 2/a 128.36; 12.35285; 27.666
90; 94.6541; 90
9660.2Lewis, James E. M.; Tarzia, Andrew; White, Andrew J. P.; Jelfs, Kim E.
Conformational control of Pd2L4 assemblies with unsymmetrical ligands
Chemical Science, 2020, 11, 677-683
1557106 CIFC123 H119 B4 F16 N17 O9 Pd2C 1 2/c 123.2193; 15.8896; 38.7298
90; 112.281; 90
13222.3Lewis, James E. M.; Tarzia, Andrew; White, Andrew J. P.; Jelfs, Kim E.
Conformational control of Pd2L4 assemblies with unsymmetrical ligands
Chemical Science, 2020, 11, 677-683
1557107 CIFC16 H19 I N2P 1 21/c 16.29025; 7.62301; 32.0065
90; 90.1584; 90
1534.73Guo, Lifang; Li, Chuanya; Shang, Hai; Zhang, Ruoyao; Li, Xuechen; Lu, Qing; Cheng, Xiao; Liu, Zhiqiang; Sun, Jing Zhi; Yu, Xiaoqiang
A side-chain engineering strategy for constructing fluorescent dyes with direct and ultrafast self-delivery to living cells
Chemical Science, 2020, 11, 661-670
1557108 CIFC64 H87 I3 N5 O2P -114.6729; 15.6807; 16.4518
85.945; 73.88; 62.636
3222.3Guo, Lifang; Li, Chuanya; Shang, Hai; Zhang, Ruoyao; Li, Xuechen; Lu, Qing; Cheng, Xiao; Liu, Zhiqiang; Sun, Jing Zhi; Yu, Xiaoqiang
A side-chain engineering strategy for constructing fluorescent dyes with direct and ultrafast self-delivery to living cells
Chemical Science, 2020, 11, 661-670
1557109 CIFC17 H18 I N2P 21 21 216.9063; 7.9318; 30.157
90; 90; 90
1651.98Guo, Lifang; Li, Chuanya; Shang, Hai; Zhang, Ruoyao; Li, Xuechen; Lu, Qing; Cheng, Xiao; Liu, Zhiqiang; Sun, Jing Zhi; Yu, Xiaoqiang
A side-chain engineering strategy for constructing fluorescent dyes with direct and ultrafast self-delivery to living cells
Chemical Science, 2020, 11, 661-670
1557110 CIFC73 H92 N5 O2 UP -113.2857; 13.9411; 20.5686
103.573; 95.666; 116.252
3230.4Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557111 CIFC75 H88 N8 UP -113.1219; 13.5561; 20.3099
78.109; 76.264; 68.201
3230.5Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557112 CIFC76 H99 N6 O P UP 1 21/c 125.884; 13.889; 21.315
90; 110.09; 90
7197Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557113 CIFC75 H96 N6 UP 1 21/n 114.7113; 12.979; 36.748
90; 94.521; 90
6994.8Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557114 CIFC82 H101 N7 O UP -113.1812; 15.8571; 19.6743
110.71; 90.48; 105.002
3692.6Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557115 CIFC33 H26 O2P 21 21 2111.3659; 11.9259; 17.9314
90; 90; 90
2430.58Liu, Xihong; Zhang, Jingying; Bai, Lutao; Wang, Linqing; Yang, Dongxu; Wang, Rui
Catalytic asymmetric multiple dearomatizations of phenols enabled by a cascade 1,8-addition and Diels–Alder reaction
Chemical Science, 2020, 11, 671-676
1557116 CIFC64 H88P -114.635; 18.1373; 22.0161
79.631; 75.201; 74.12
5396.2Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557117 CIFC61 H39 B F24 N7 RhP -112.9083; 14.2464; 20.148
74.898; 79.351; 89.459
3512.7Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557118 CIFC67 H62 B F24 N5 RhP -111.7452; 16.7896; 18.5777
84.062; 73.668; 70.038
3304.3Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557119 CIFC32 H16 F8P -110.7497; 11.175; 11.5688
96.962; 96.945; 116.711
1207.93Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557120 CIFC60 H51 B Cl2 F24 N5 RhC 1 c 119.4406; 17.1714; 19.516
90; 103.079; 90
6345.86Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557121 CIFC54 H37 B F24 N5 RhC 1 2/c 116.95902; 18.45666; 34.7576
90; 98.7133; 90
10753.8Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557122 CIFC68 H45 B F25 N5 O RhP -113.01044; 20.05043; 26.99316
90.7652; 97.9088; 106.636
6672.31Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557123 CIFC21 H20 O6P 21 21 218.6977; 9.9164; 20.6241
90; 90; 90
1778.83Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557124 CIFC37 H32 Br2 O9P 1 21/c 115.4799; 12.7561; 17.7032
90; 110.471; 90
3275Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557125 CIFC20 H20 O6P 1 21/c 111.1979; 12.5205; 24.904
90; 93.401; 90
3485.5Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557126 CIFC18 H16 O5P 1 21 111.2987; 10.6941; 11.9582
90; 90.723; 90
1444.79Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557127 CIFC18 H18 O7P 1 21/n 113.6526; 9.772; 24.8831
90; 101.015; 90
3258.6Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557128 CIFC27 H29 N O8P 1 21 110.1038; 12.0566; 10.4153
90; 97.827; 90
1256.95Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557129 CIFC17 H20 O6P 1 21 17.091; 16.2621; 13.2704
90; 92.494; 90
1528.82Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557130 CIFC27 H29 N O8C 1 2 126.9187; 7.6682; 12.9814
90; 108.271; 90
2544.5Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557131 CIFC6 H5 D N2P b c a6.0431; 13.3857; 14.3592
90; 90; 90
1161.53Yang, Huan; Zhang, Li; Zhou, Fei-Yu; Jiao, Lei
An umpolung approach to the hydroboration of pyridines: a novel and efficient synthesis of N-H 1,4-dihydropyridines
Chemical Science, 2020, 11, 742-747
1557132 CIFIn8 Ir1.5 S5.25P 3 1 m13.9378; 13.9378; 8.2316
90; 90; 120
1384.9Khoury, Jason F.; He, Jiangang; Pfluger, Jonathan E.; Hadar, Ido; Balasubramanian, Mahalingam; Stoumpos, Constantinos C.; Zu, Rui; Gopalan, Venkatraman; Wolverton, Chris; Kanatzidis, Mercouri G.
Ir6In32S21, a polar, metal-rich semiconducting subchalcogenide
Chemical Science, 2020, 11, 870-878
1557133 CIFC8 H16 Cl2 Pd S2C 1 2/c 115.648; 9.157; 9.215
90; 111.94; 90
1224.8Noren, Bertil; Oskarsson, Ake; Svensson, Christer
cis/trans Influences on Bond Distances in Square-Planar Complexes. Crystal Structures of trans-Dichlorobis(tetrahydrothiophene)palladium(II) and trans-Dichlorobis(tetrahydrothiophene)platinum(II)
Acta Chemica Scandinavica, 1997, 51, 289-293
1557134 CIFC8 H16 Cl2 Pt S2C 1 2/c 115.62; 9.146; 9.255
90; 111.98; 90
1226.1Noren, Bertil; Oskarsson, Ake; Svensson, Christer
cis/trans Influences on Bond Distances in Square-Planar Complexes. Crystal Structures of trans-Dichlorobis(tetrahydrothiophene)palladium(II) and trans-Dichlorobis(tetrahydrothiophene)platinum(II)
Acta Chemica Scandinavica, 1997, 51, 289-293
1557135 CIFC2 H8 Cd Cl2 N4 S2P m n 2113.11; 5.813; 6.482
90; 90; 90
493.98Krunks, Malle; Madarasz, Janos; Hiltunen, Lassi; Mannonen, Risto; Mellikov, Enn; Niinisto, Lauri
Structure and Thermal Behaviour of Dichlorobis(thiourea)cadmium(II), a Single-Source Precursor for CdS Thin Films
Acta Chemica Scandinavica, 1997, 51, 294-301
1557136 CIFC15 H12 N2P -110.479; 10.718; 11.391
99.76; 92.02; 111.48
1166.7Polamo, Mika; Repo, Timo; Leskela, Markku
Crystal Structures of 2-(1-Naphthylamino)pyridine and 2-(Phenylamino)pyridine at 193 K
Acta Chemica Scandinavica, 1997, 51, 325-329
1557137 CIFC11 H10 N2P 1 21/c 110.18; 8.035; 12.052
90; 113.37; 90
904.9Polamo, Mika; Repo, Timo; Leskela, Markku
Crystal Structures of 2-(1-Naphthylamino)pyridine and 2-(Phenylamino)pyridine at 193 K
Acta Chemica Scandinavica, 1997, 51, 325-329
1557138 CIFC19 H30 O3P 1 21 18.4484; 22.6578; 17.8169
90; 90.006; 90
3410.55Chen, He-Ping; Zhao, Zhen-Zhu; Cheng, Gui-Guang; Zhao, Kuan; Han, Kai-Yue; Zhou, Lin; Feng, Tao; Li, Zheng-Hui; Liu, Ji-Kai
Immunosuppressive Nor-isopimarane Diterpenes from Cultures of the Fungicolous Fungus <i>Xylaria longipes</i> HFG1018.
Journal of natural products, 2020
1557139 CIFC19 H30 O3P 21 21 216.8215; 10.0565; 24.1425
90; 90; 90
1656.2Chen, He-Ping; Zhao, Zhen-Zhu; Cheng, Gui-Guang; Zhao, Kuan; Han, Kai-Yue; Zhou, Lin; Feng, Tao; Li, Zheng-Hui; Liu, Ji-Kai
Immunosuppressive Nor-isopimarane Diterpenes from Cultures of the Fungicolous Fungus <i>Xylaria longipes</i> HFG1018.
Journal of natural products, 2020
1557140 CIFC19 H30 O2C 1 2 121.2462; 8.9711; 8.8437
90; 98.376; 90
1667.65Chen, He-Ping; Zhao, Zhen-Zhu; Cheng, Gui-Guang; Zhao, Kuan; Han, Kai-Yue; Zhou, Lin; Feng, Tao; Li, Zheng-Hui; Liu, Ji-Kai
Immunosuppressive Nor-isopimarane Diterpenes from Cultures of the Fungicolous Fungus <i>Xylaria longipes</i> HFG1018.
Journal of natural products, 2020
1557141 CIFC68 H50 N2 O4P 1 21 113.949; 15.719; 15.272
90; 107.438; 90
3194.7Chen, Michelle; Powers-Riggs, Natalia E.; Coleman, Adam F.; Young, Ryan M.; Wasielewski, Michael R.
Singlet Fission in Quaterrylenediimide Thin Films
The Journal of Physical Chemistry C, 2020
1557142 CIFC18 H20 Cl N3 O PdP -17.5074; 11.2005; 11.2581
70.42; 78.131; 84.462
872.46Czyz, Milena L.; Weragoda, Geethika K.; Horngren, Tyra H.; Connell, Timothy U.; Gomez, Daniel; O'Hair, Richard A. J.; Polyzos, Anastasios
Photoexcited Pd(ii) auxiliaries enable light-induced control in C(sp3)‒H bond functionalisation
Chemical Science, 2020, 11, 2455-2463
1557143 CIFC23 H24 N O4 PP 1 21/c 114.1914; 9.0659; 16.0033
90; 101.488; 90
2017.7Hirai, Yuichi; Wrona-Piotrowicz, Anna; Zakrzewski, Janusz; Brosseau, Arnaud; Guillot, Régis; Métivier, Rémi; Allain, Clémence
Mechanofluorochromism of pyrene-derived amidophosphonates.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2020, 19, 229-234
1557144 CIFC25 H28 N O4 PC 1 2/c 126.8408; 9.9974; 17.4578
90; 110.506; 90
4387.8Hirai, Yuichi; Wrona-Piotrowicz, Anna; Zakrzewski, Janusz; Brosseau, Arnaud; Guillot, Régis; Métivier, Rémi; Allain, Clémence
Mechanofluorochromism of pyrene-derived amidophosphonates.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2020, 19, 229-234
1557145 CIFC28 H26 N O4 PP -19.7414; 10.2898; 13.4571
110.284; 109.513; 90.732
1179.9Hirai, Yuichi; Wrona-Piotrowicz, Anna; Zakrzewski, Janusz; Brosseau, Arnaud; Guillot, Régis; Métivier, Rémi; Allain, Clémence
Mechanofluorochromism of pyrene-derived amidophosphonates.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2020, 19, 229-234
1557146 CIFC21 H30 F6 N O PP 1 21/m 16.007; 14.899; 13.269
90; 92.21; 90
1186.7Potschke, Norbert; Nieger, Martin; Niecke, Edgar
Crystal Structure of 1,1,1,3,3,3-Hexafluoro-2-propanyloxy-(2,4,6-tri-tert-butylphenylimino)phosphine
Acta Chemica Scandinavica, 1997, 51, 337-339
1557147 CIFC11 H24 Br Cl Cu N4 O4P 1 21/n 18.097; 22.75; 8.983
90; 94.21; 90
1650.3Springborg, Johan; Sotofte, Inger
Synthetic, Thermodynamic and Crystallographic Studies of Pentacoordinated Copper(II) Complexes with [24.31]Adamanzane, 1,4,7,10-Tetraazabicyclo[5.5.3]pentadecane, and Bromide, Iodide, Hydroxide, Water or Ammonia
Acta Chemica Scandinavica, 1997, 51, 357-366
1557148 CIFC11 H24 Cu I2 N4P n n 213.678; 13.359; 9.219
90; 90; 90
1684.5Springborg, Johan; Sotofte, Inger
Synthetic, Thermodynamic and Crystallographic Studies of Pentacoordinated Copper(II) Complexes with [24.31]Adamanzane, 1,4,7,10-Tetraazabicyclo[5.5.3]pentadecane, and Bromide, Iodide, Hydroxide, Water or Ammonia
Acta Chemica Scandinavica, 1997, 51, 357-366
1557149 CIFC30 H32 N4 O3P 1 21/n 112.2782; 11.9261; 18.859
90; 103.754; 90
2682.4Wang, Shuo; Ren, Jia-Shu; Shan, Lian-Yun; Sun, Xiao-Yan; Di, Bin; Gu, Ning; Chen, Jin-Long
Triplexed Tracking Labile Sulfur-Containing Species on a Single-Molecule "Nezha" Sensor.
Analytical chemistry, 2020
1557150 CIFC28 H29 N O10P 21 21 218.0096; 12.0536; 28.063
90; 90; 90
2709.3Marthi, Katalin; Larsen, Sine; Acs, Maria; Balint, Jozsef; Fogassy, Elemer
Optical Resolution of 2-(2'-Hydroxyethylamino)-1-phenylethanol, and the Crystal Structures of Two Polymorphic Modifications of the (2R,3R)-O,O'-Dibenzoyl Hydrogen Tartrate Salt of the (S)-(+)-Enantiomer
Acta Chemica Scandinavica, 1997, 51, 367-378
1557151 CIFC28 H29 N O10P 1 21 18.0047; 11.865; 28.065
90; 91.41; 90
2664.7Marthi, Katalin; Larsen, Sine; Acs, Maria; Balint, Jozsef; Fogassy, Elemer
Optical Resolution of 2-(2'-Hydroxyethylamino)-1-phenylethanol, and the Crystal Structures of Two Polymorphic Modifications of the (2R,3R)-O,O'-Dibenzoyl Hydrogen Tartrate Salt of the (S)-(+)-Enantiomer
Acta Chemica Scandinavica, 1997, 51, 367-378
1557152 CIFC3 Ca2 K2 O9R 3 :H13.01; 13.01; 8.615
90; 90; 120
1262.8Winbo, Camilla; Bostrom, Dan; Gobbels, Matthias
Crystal Structure of the Double Carbonate K2Ca2(CO3)3
Acta Chemica Scandinavica, 1997, 51, 387-391
1557153 CIFC25 H38 N4 O4 SC 1 2 121.3; 9.674; 6.986
90; 104.27; 90
1395.1Hammer, Kristin; Benneche, Tore; Hope, Hakon; Undheim, Kjell
Stereoselective Synthesis of Thiophenedimethyl- and Benzenedimethyl- alpha,alpha'-Bridged Bis(glycines)
Acta Chemica Scandinavica, 1997, 51, 392-402
1557154 CIFAl2 Br6P 1 21/a 110.301; 7.095; 7.525
90; 96.45; 90
546.5Berg, Rolf Willestofte; Poulsen, Finn Willy; Nielsen, Kurt
Redetermination of the Crystal Structure of Al2Br6. A Comparison of Three Methods
Acta Chemica Scandinavica, 1997, 51, 442-448
1557155 CIFC116 H154 Cl N9 O9 Ti2P 1 21/n 126.5998; 13.18144; 32.7719
90; 104.629; 90
11118.1Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557156 CIFC30 H44 Cl2 O2 TiP 1 21 111.0509; 9.6943; 14.8668
90; 108.131; 90
1513.61Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557157 CIFC220 H283 Cl6 N15 O20 Ti6P -117.651; 18.2749; 19.8507
67.4531; 68.6833; 73.3966
5428.93Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557158 CIFC125 H172.5 Cl N8.5 O9 Ti2P -117.4371; 17.7765; 21.1345
100.63; 93.526; 104.426
6195.8Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557159 CIFC120 H164 Cl2 N6 O8 Ti2P -112.5697; 18.1183; 27.5282
104.559; 98.781; 102.093
5792.04Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557160 CIFC108 H140 Cl N7 O9 Ti2P -113.9465; 17.4744; 23.5392
85.6028; 74.2347; 74.5316
5320.83Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557161 CIFC130.71 H174.42 Cl N2.85 O11.43 Ti2P -116.3253; 17.3213; 23.5069
102.481; 91.495; 101.593
6340.9Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557162 CIFC113 H149.5 Cl N7.5 O9 Ti2P 1 21/n 126.6007; 13.18235; 32.7812
90; 104.622; 90
11122.7Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557163 CIFC49 H61 Cl N2 O4 TiP -112.14575; 18.0271; 21.0909
95.2564; 105.355; 90.2869
4432.27Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557164 CIFC54 H72 Cl2 N2 O4 TiC 1 2/c 143.9803; 12.41683; 19.4608
90; 94.9954; 90
10587.1Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557165 CIFC100 H102 Au4 P2 Ru2 S8P 1 21/c 113.9904; 14.295; 48.384
90; 94.664; 90
9644.4Sun, Yongnan; Pei, Wei; Xie, Mingcai; Xu, Shun; Zhou, Si; Zhao, Jijun; Xiao, Kang; Zhu, Yan
Excitonic Au4Ru2(PPh3)2(SC2H4Ph)8 cluster for light-driven dinitrogen fixation
Chemical Science, 2020, 11, 2440-2447
1557166 CIFBa2 O14 Si4 V2I 4/m7.0429; 7.0429; 11.444
90; 90; 90
567.65Hans-Peter Bojar; Franz Walter; Judith Baumgartner
Bavsiite, Ba2V2O2[Si4O12], mineral data and crystal structure
Mineralogical Magazine, 2019, 83, 821-827
1557167 CIFC24 H22 Cl3 N4 NbP 1 21/c 118.292; 19.904; 17.646
90; 109.47; 90
6057Polamo, Mika; Leskela, Markku
Syntheses and Crystal Structures of Bis[2-(benzylamido)pyridine]trichloro Complexes of Niobium(V) and Tantalum(V)
Acta Chemica Scandinavica, 1997, 51, 449-454
1557168 CIFC24 H22 Cl3 N4 TaP 1 21/n 19.227; 20.005; 16.804
90; 100.08; 90
3054Polamo, Mika; Leskela, Markku
Syntheses and Crystal Structures of Bis[2-(benzylamido)pyridine]trichloro Complexes of Niobium(V) and Tantalum(V)
Acta Chemica Scandinavica, 1997, 51, 449-454
1557169 CIFC23 H22 O5P 1 21/c 116.4615; 7.573; 16.0803
90; 111.302; 90
1867.7Maeda, Gasper; van der Wal, Jelle; Gupta, Arvind Kumar; Munissi, Joan J. E.; Orthaber, Andreas; Sunnerhagen, Per; Nyandoro, Stephen S.; Erdélyi, Máté
Oxygenated Cyclohexene Derivatives and Other Constituents from the Roots of <i>Monanthotaxis trichocarpa</i>.
Journal of natural products, 2020
1557170 CIFC22 H21 Cl O6P 1 21 15.933; 13.4485; 12.3282
90; 96.291; 90
977.74Maeda, Gasper; van der Wal, Jelle; Gupta, Arvind Kumar; Munissi, Joan J. E.; Orthaber, Andreas; Sunnerhagen, Per; Nyandoro, Stephen S.; Erdélyi, Máté
Oxygenated Cyclohexene Derivatives and Other Constituents from the Roots of <i>Monanthotaxis trichocarpa</i>.
Journal of natural products, 2020
1557171 CIFC37 H53 F N2 O2 ZnP 1 21/n 122.1881; 11.5778; 29.7479
90; 106.38; 90
7331.75Jiang, Jinxing; Cui, Yaqin; Lu, Yaguang; Zhang, Bin; Pan, Xiaobo; Wu, Jincai
Weak Lewis Pairs as Catalysts for Highly Isoselective Ring-Opening Polymerization of Epimerically Labile rac-O-Carboxyanhydride of Mandelic Acid
Macromolecules, 2020
1557172 CIFC36 H51 F N2 O2 ZnP 1 21/c 115.3766; 17.6353; 13.571
90; 105.2; 90
3551.32Jiang, Jinxing; Cui, Yaqin; Lu, Yaguang; Zhang, Bin; Pan, Xiaobo; Wu, Jincai
Weak Lewis Pairs as Catalysts for Highly Isoselective Ring-Opening Polymerization of Epimerically Labile rac-O-Carboxyanhydride of Mandelic Acid
Macromolecules, 2020
1557173 CIFC54.28 H49.13 Ir O0.28 P3P 1 21/c 117.31801; 12.99024; 19.71788
90; 94.4442; 90
4422.5Tickner, Ben J.; Semenova, Olga; Iali, Wissam; Rayner, Peter J.; Whitwood, Adrian C.; Duckett, Simon B.
Optimisation of pyruvate hyperpolarisation using SABRE by tuning the active magnetisation transfer catalyst.
Catalysis science & technology, 2020, 10, 1343-1355
1557174 CIFC57 H68 Cl2 Ir2 N4 O S2P 1 21/c 112.9317; 16.6; 25.5365
90; 90.2757; 90
5481.76Tickner, Ben J.; Semenova, Olga; Iali, Wissam; Rayner, Peter J.; Whitwood, Adrian C.; Duckett, Simon B.
Optimisation of pyruvate hyperpolarisation using SABRE by tuning the active magnetisation transfer catalyst.
Catalysis science & technology, 2020, 10, 1343-1355
1557175 CIF
HKL
Paper
C16 H21 N3 O4P -18.127; 8.411; 12.536
105.36; 96.52; 94.77
815.2Yoo, Miri; Koh, Dongsoo
Diethyl 4-(1<i>H</i>-imidazol-2-yl)-2,6-dimethyl-1,4-dihydropyridine-3,5-dicarboxylate
IUCrData, 2020, 5, x200034
1557176 CIF
HKL
Paper
C25 H22 N2 O2 SeP 1 21/c 113.209; 6.343; 27.08
90; 103.356; 90
2207.5Morris, LaQuze L.; Alvarado, Clarisa A.; Goncalves, Julia M.; Singh, Ravi P.; Lovely, Carl J.; Yousufuddin, Muhammed
[4-(4-Methoxyphenyl)-8-oxo-3-(phenylselanyl)spiro[4.5]deca-3,6,9-trien-2-yl]methylcyanamide
IUCrData, 2020, 5, x200078
1557177 CIF
HKL
Paper
C40 H74 Co N8 S4P -17.484; 8.587; 18.523
83.782; 81.868; 71.189
1113Giltzau, Niels Ole; Köckerling, Martin
Bis(1-dodecyl-4-aza-1-azoniabicyclo[2.2.2]octane)tetraisothiocyanatocobalt(II)
IUCrData, 2020, 5, x200023
1557178 CIF
HKL
Paper
C18 H17 F O5P 1 21/c 115.5801; 8.3414; 12.1298
90; 97.086; 90
1564.35Yoo, Miri; Koh, Dongsoo
(<i>E</i>)-1-(4-Fluoro-2-hydroxyphenyl)-3-(2,3,4-trimethoxyphenyl)prop-2-en-1-one
IUCrData, 2020, 5, x200071
1557179 CIFAl Br4 CsP n m a12.2137; 7.5304; 9.9293
90; 90; 90
913.2Berg, Rolf Willestofte
The CsBr-AlBr3 Phase Diagram and the Crystal Structure of CsAlBr4
Acta Chemica Scandinavica, 1997, 51, 455-461
1557180 CIFC20 H26 N4 S2P b c a8.459; 10.552; 22.823
90; 90; 90
2037.2Laitinen, Riitta H.; Csoban, Katalin; Pursiainen, Jouni; Huuskonen, Juhani; Rissanen, Kari
Synthesis and Characterization of Some New Bipyridyl-Based Multidentate Ligands and Their CuI Complexes
Acta Chemica Scandinavica, 1997, 51, 462-469
1557181 CIFC22 H30 N4 S2P -19.1239; 9.518; 7.3299
95.26; 107.805; 112.17
545.5Laitinen, Riitta H.; Csoban, Katalin; Pursiainen, Jouni; Huuskonen, Juhani; Rissanen, Kari
Synthesis and Characterization of Some New Bipyridyl-Based Multidentate Ligands and Their CuI Complexes
Acta Chemica Scandinavica, 1997, 51, 462-469
1557182 CIFC20 H28 Br Cu N4 O S2P -19.799; 10.416; 12.947
66.186; 73.45; 85.07
1158.2Laitinen, Riitta H.; Csoban, Katalin; Pursiainen, Jouni; Huuskonen, Juhani; Rissanen, Kari
Synthesis and Characterization of Some New Bipyridyl-Based Multidentate Ligands and Their CuI Complexes
Acta Chemica Scandinavica, 1997, 51, 462-469
1557183 CIFC26 H28 N4 O5P 4111.7728; 11.7728; 17.1159
90; 90; 90
2372.2Yang, Yaxi; Zhang, Rukang; Li, Zhaojun; Mei, Lianghe; Wan, Shili; Ding, Hong; Chen, Zhifeng; Xing, Jing; Feng, Huijin; Han, Jie; Jiang, Hualiang; Zheng, Mingyue; Luo, Cheng; Zhou, Bing
Discovery of Highly Potent, Selective, and Orally Efficacious p300/CBP Histone Acetyltransferases Inhibitors.
Journal of medicinal chemistry, 2020
1557184 CIFC13 H15 N3 O5P 21 21 218.4194; 8.5433; 19.1641
90; 90; 90
1378.46Yang, Yaxi; Zhang, Rukang; Li, Zhaojun; Mei, Lianghe; Wan, Shili; Ding, Hong; Chen, Zhifeng; Xing, Jing; Feng, Huijin; Han, Jie; Jiang, Hualiang; Zheng, Mingyue; Luo, Cheng; Zhou, Bing
Discovery of Highly Potent, Selective, and Orally Efficacious p300/CBP Histone Acetyltransferases Inhibitors.
Journal of medicinal chemistry, 2020
1557185 CIFC25 H23 F4 N5 O5P 110.1492; 10.1392; 25.2626
96.515; 96.515; 107.35
2435.42Yang, Yaxi; Zhang, Rukang; Li, Zhaojun; Mei, Lianghe; Wan, Shili; Ding, Hong; Chen, Zhifeng; Xing, Jing; Feng, Huijin; Han, Jie; Jiang, Hualiang; Zheng, Mingyue; Luo, Cheng; Zhou, Bing
Discovery of Highly Potent, Selective, and Orally Efficacious p300/CBP Histone Acetyltransferases Inhibitors.
Journal of medicinal chemistry, 2020
1557186 CIFC15 H14 N4 O2P 21 21 215.8178; 16.9835; 28.2863
90; 90; 90
2794.9Yang, Yaxi; Zhang, Rukang; Li, Zhaojun; Mei, Lianghe; Wan, Shili; Ding, Hong; Chen, Zhifeng; Xing, Jing; Feng, Huijin; Han, Jie; Jiang, Hualiang; Zheng, Mingyue; Luo, Cheng; Zhou, Bing
Discovery of Highly Potent, Selective, and Orally Efficacious p300/CBP Histone Acetyltransferases Inhibitors.
Journal of medicinal chemistry, 2020
1557187 CIFC15 H16 O6P 1 21/c 16.20271; 12.9748; 17.3444
90; 96.612; 90
1386.57Liu, Tingting; Wu, Haibo; Zhang, Jing; Deng, Wenjie; Yang, Luowenlei
Modified Eremophilanes from Parasenecio hastatus and Their Neuroprotective Activities
Journal of Natural Products, 2020
1557188 CIFC16 H18 O3P 1 21 18.7529; 5.1376; 14.4614
90; 104.921; 90
628.39Liu, Tingting; Wu, Haibo; Zhang, Jing; Deng, Wenjie; Yang, Luowenlei
Modified Eremophilanes from Parasenecio hastatus and Their Neuroprotective Activities
Journal of Natural Products, 2020
1557189 CIFC22 H12 F6 N2 O3P 1 21/n 110.7749; 15.2475; 12.314
90; 108.515; 90
1918.4Malla, Javid Ahmad; Umesh, Rintu M.; Vijay, Amal; Mukherjee, Arnab; Lahiri, Mayurika; Talukdar, Pinaki
Apoptosis-inducing activity of a fluorescent barrel-rosette M+/Cl− channel
Chemical Science, 2020, 11, 2420-2428
1557190 CIFC33 H35 Cl3 Cu N6 O11 VC 1 2/c 123.445; 16.392; 20.612
90; 106.955; 90
7577Hazell, Alan; McKenzie, Christine J.; Moubaraki, Boujemaa; Murray, Keith S.
Crystal Structure and Magnetic Properties of a Copper(II)-Vanadium(IV) Complex of an 'Open-Ended' Dinucleating Ligand
Acta Chemica Scandinavica, 1997, 51, 470-475
1557191 CIFCu3 Fe2 O18 Se6P 1 21/n 15.362; 18.84; 7.612
90; 92.72; 90
768.1Giester, G.
Synthesis and Crystal Structure of the New Polymorph Cu3Fe2(SeO3)6-II
Acta Chemica Scandinavica, 1997, 51, 501-514
1557192 CIFC36 H32 N6 O4 S2 ZnC 1 2/c 121.811; 11.523; 14.063
90; 98.64; 90
3494.3Romero, Jaime; Garcia-Vazquez, Jose A.; Duran, Maria L.; Castineiras, Alfonso; Sousa, Antonio; Garnovskii, Alexander D.; Garnovskii, D. A.
Electrochemical Synthesis of Zinc and Cadmium Complexes with N-[(2-pyrrolyl)methylidyne]-N'-tosylbenzene-1,2-diamine. The Crystal Structure of Bis-{N-[(2-pyrrolyl)methylidene]-N'-tosylbenzene-1,2-diaminato}zinc(II)
Acta Chemica Scandinavica, 1997, 51, 672-675
1557193 CIFC20 H14P 1 21/c 114.0565; 5.9201; 7.8474
90; 92.837; 90
652.23Shibuya, Yusuke; Aonuma, Kazuhiro; Kimura, Tomohiro; Kaneko, Takuro; Fujiwara, Wataru; Yamaguchi, Yuji; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Linear Biazulene Isomers: Effects of Molecular and Packing Structure on Optoelectronic and Charge-Transport Properties
The Journal of Physical Chemistry C, 2020
1557194 CIFC20 H14P 1 21/c 113.5349; 6.0042; 8.1543
90; 94.232; 90
660.86Shibuya, Yusuke; Aonuma, Kazuhiro; Kimura, Tomohiro; Kaneko, Takuro; Fujiwara, Wataru; Yamaguchi, Yuji; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Linear Biazulene Isomers: Effects of Molecular and Packing Structure on Optoelectronic and Charge-Transport Properties
The Journal of Physical Chemistry C, 2020
1557195 CIFC20 H14P -15.9457; 7.8815; 14.0822
86.684; 87.09; 88.848
657.85Shibuya, Yusuke; Aonuma, Kazuhiro; Kimura, Tomohiro; Kaneko, Takuro; Fujiwara, Wataru; Yamaguchi, Yuji; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Linear Biazulene Isomers: Effects of Molecular and Packing Structure on Optoelectronic and Charge-Transport Properties
The Journal of Physical Chemistry C, 2020
1557196 CIFC20 H14P -16.087; 7.5639; 14.4293
97.942; 95.597; 90.921
654.54Shibuya, Yusuke; Aonuma, Kazuhiro; Kimura, Tomohiro; Kaneko, Takuro; Fujiwara, Wataru; Yamaguchi, Yuji; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Linear Biazulene Isomers: Effects of Molecular and Packing Structure on Optoelectronic and Charge-Transport Properties
The Journal of Physical Chemistry C, 2020
1557197 CIFC58 H62 N6 O13 Zn2P 1 21/c 115.21; 16.731; 23.716
90; 104.529; 90
5842Fu, Guorui; He, Yani; Li, Wentao; Miao, Tiezheng; Lü, Xingqiang; He, Hongshan; Liu, Li; Wong, Wai-Yeung
Efficient white polymer light-emitting diodes (WPLEDs) based on covalent-grafting of [Zn2(MP)3(OAc)] into PVK
Chemical Science, 2020, 11, 2640-2646
1557198 CIFC26 H52 Cu F6 Mn N8 O8 S2P 1 21/a 117.525; 17.955; 12.804
90; 104.97; 90
3892.2Baron, V.; Gillon, B.; Kahn, O.; Rundlof, H.; Tellgren, R.
Low-Temperature Neutron and X-Ray Diffraction Studies on Mn(cth)Cu(oxpn)(CF3SO3)2: (cth) = (±)-5,7,7,12,14,14-Hexamethyl-1,4,8,11-tetraazacyclotetradecane; (oxpn) = N,N'-Bis(3-aminopropyl)oxamide
Acta Chemica Scandinavica, 1997, 51, 683-688
1557199 CIFC6 H18 I4 N3 P SeP n a 2114.003; 10.958; 11.801
90; 90; 90
1810.8Rudd, Martin D.; Lindeman, Sergey V.; Husebye, Steinar
Three-Center, Four-Electron Bonding and Structural Characteristics of Two-Coordinate Iodine(I) Complexes with Halogen and Chalcogen Ligands. Synthesis, Spectroscopic Characterization and X-Ray Structural Studies of (Triiodo)[tris(dimethylamino)phosphaneselenide]iodine(I) and Bis{(triiodo)[tri(N-morpholyl)phosphaneselenide]iodine(I)}/Diiodine Molecular Complex
Acta Chemica Scandinavica, 1997, 51, 689-708
1557200 CIFC12 H24 I5 N3 O3 P SeP 1 21/c 18.999; 16.874; 16.996
90; 103.98; 90
2504.4Rudd, Martin D.; Lindeman, Sergey V.; Husebye, Steinar
Three-Center, Four-Electron Bonding and Structural Characteristics of Two-Coordinate Iodine(I) Complexes with Halogen and Chalcogen Ligands. Synthesis, Spectroscopic Characterization and X-Ray Structural Studies of (Triiodo)[tris(dimethylamino)phosphaneselenide]iodine(I) and Bis{(triiodo)[tri(N-morpholyl)phosphaneselenide]iodine(I)}/Diiodine Molecular Complex
Acta Chemica Scandinavica, 1997, 51, 689-708
1557201 CIFC23 H28 O8P 1 21 15.996; 12.4304; 14.2341
90; 94.361; 90
1057.83Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557202 CIFC21 H26 O5P 16.3062; 7.6848; 9.7183
87.904; 80.198; 87.694
463.505Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557203 CIFC21 H26 O6P 21 21 218.0315; 8.3527; 27.8078
90; 90; 90
1865.48Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557204 CIFC24 H26 O10P 21 21 217.77753; 10.89287; 25.97545
90; 90; 90
2200.63Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557205 CIFC23 H28 O8P 21 21 217.9019; 10.2955; 25.9952
90; 90; 90
2114.81Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557206 CIFC20 H30 N2 O2P 1 21/c 111.012; 16.138; 11.225
90; 96.899; 90
1980Chen, Hang; Ye, Hebo; Hai, Yu; Zhang, Ling; You, Lei
n → π* interactions as a versatile tool for controlling dynamic imine chemistry in both organic and aqueous media
Chemical Science, 2020, 11, 2707-2715
1557207 CIFC19 H29 N3 O2I 1 2/a 117.03; 10.58; 22.26
90; 103.23; 90
3904Chen, Hang; Ye, Hebo; Hai, Yu; Zhang, Ling; You, Lei
n → π* interactions as a versatile tool for controlling dynamic imine chemistry in both organic and aqueous media
Chemical Science, 2020, 11, 2707-2715
1557208 CIF
HKL
Paper
C20 H24 N2 O6 S2C 1 2/c 129.1537; 8.8739; 19.9919
90; 123.621; 90
4306.9Narvekar, Kedar U.; Srinivasan, Bikshandarkoil R.
Benzene-1,2-diaminium bis(4-methylbenzene-1-sulfonate)
IUCrData, 2020, 5, x200100
1557209 CIF
HKL
Paper
Br Cs F4I m m m5.5075; 6.789; 12.2572
90; 90; 90
458.3Malin, Artem V.; Ivlev, Sergei I.; Ostvald, Roman V.; Kraus, Florian
Redetermination of the crystal structure of caesium tetrafluoridobromate(III) from single-crystal X-ray diffraction data
IUCrData, 2020, 5, x200114
1557210 CIF
HKL
Paper
C19 H13 I O2P 1 21/n 17.0481; 18.2185; 12.6391
90; 104.947; 90
1568.02Dean, Raven; Miller, Chelsea N.; Zingales, Sarah K.; Padgett, Clifford W.
3-(4-Iodophenyl)-2,3-dihydro-1<i>H</i>-benzo[<i>f</i>]chromen-1-one
IUCrData, 2020, 5, x200110
1557211 CIFC26 H26 Cl3 N4 TaC 1 2/c 110.577; 23.018; 11.102
90; 93.35; 90
2698Polamo, Mika; Leskela, Markku
Syntheses and Crystal Structures of Bis[2-(benzylamino)-4-methylpyridinato]trichlorotantalum(V) and Bis[2-(benzylamino)-6-methylpyridinato]trichlorotantalum(V)
Acta Chemica Scandinavica, 1997, 51, 709-713
1557212 CIFC34 H36 Cl3 N4 TaP -110.066; 12.113; 14.329
106.53; 100.51; 90.15
1644Polamo, Mika; Leskela, Markku
Syntheses and Crystal Structures of Bis[2-(benzylamino)-4-methylpyridinato]trichlorotantalum(V) and Bis[2-(benzylamino)-6-methylpyridinato]trichlorotantalum(V)
Acta Chemica Scandinavica, 1997, 51, 709-713
1557213 CIFC29 H21 NP 1 21/c 116.841; 5.9463; 21.001
90; 96.31; 90
2090.3Li, Ye-Xin; Chen, You-Gui; Yu, Zhen-Feng; Yang, Xiao-Feng; Nie, Yong; Cui, Yu; Sun, Guo-Xin
Polymorph-Dependent Multicolor-Switchable Mechanofluorochromism of 1-(9-Anthryl)vinyl-3-(3-pyridyl)vinylbenzene: Molecular Conformation versus Intermolecular Interaction
The Journal of Physical Chemistry C, 2020
1557214 CIFC29 H21 NP 4/n :227.4933; 27.4933; 5.8624
90; 90; 90
4431.3Li, Ye-Xin; Chen, You-Gui; Yu, Zhen-Feng; Yang, Xiao-Feng; Nie, Yong; Cui, Yu; Sun, Guo-Xin
Polymorph-Dependent Multicolor-Switchable Mechanofluorochromism of 1-(9-Anthryl)vinyl-3-(3-pyridyl)vinylbenzene: Molecular Conformation versus Intermolecular Interaction
The Journal of Physical Chemistry C, 2020
1557215 CIFC29 H21 NP 1 21/c 15.5332; 11.857; 31.179
90; 90.172; 90
2045.6Li, Ye-Xin; Chen, You-Gui; Yu, Zhen-Feng; Yang, Xiao-Feng; Nie, Yong; Cui, Yu; Sun, Guo-Xin
Polymorph-Dependent Multicolor-Switchable Mechanofluorochromism of 1-(9-Anthryl)vinyl-3-(3-pyridyl)vinylbenzene: Molecular Conformation versus Intermolecular Interaction
The Journal of Physical Chemistry C, 2020
1557216 CIFC30 H32 P2 S4P 1 21/n 113.586; 7.729; 15.57
90; 112.95; 90
1505.5Laitinen, Riitta H.; Losonczi, Judit; Pursiainen, Jouni; Ahlgren, Markku
X-Ray Crystal Structure of 1,2-Bis[bis(2-methylthiophenyl)phosphino]ethane
Acta Chemica Scandinavica, 1997, 51, 804-806
1557217 CIFC26 H27 Cu N9 O7P -19.529; 10.14; 14.423
86.05; 77.71; 86.89
1357.3Sletten, Jorunn; Grove, Hilde
Copper(II) Complex of the Tripodal Ligand Tris((benzimidazol-2-yl)methyl)amine and its Bonding to a Sulfur Ligand of Thiolate Character
Acta Chemica Scandinavica, 1997, 51, 822-831
1557218 CIFC24 H23 Cu N9 O7P -19.791; 9.644; 13.622
96.31; 96.93; 97.08
1256.9Sletten, Jorunn; Grove, Hilde
Copper(II) Complex of the Tripodal Ligand Tris((benzimidazol-2-yl)methyl)amine and its Bonding to a Sulfur Ligand of Thiolate Character
Acta Chemica Scandinavica, 1997, 51, 822-831
1557219 CIFC52 H53 Cu2 N21 O11 SP -113.339; 14.151; 16.232
103.05; 108.82; 93.21
2797.5Sletten, Jorunn; Grove, Hilde
Copper(II) Complex of the Tripodal Ligand Tris((benzimidazol-2-yl)methyl)amine and its Bonding to a Sulfur Ligand of Thiolate Character
Acta Chemica Scandinavica, 1997, 51, 822-831
1557220 CIFS8F d d d :210.331; 12.6786; 24.3519
90; 90; 90
3189.7MIKURIYA, Masahiro; TANIGUCHI, Kazuki; KOYAMA, Yoshiki; WATANABE, Hiroaki; YOSHIOKA, Daisuke; MITSUHASHI, Ryoji; ASATO, Eiji
Crystal Structure of S<sub>8</sub> Molecule from Thiourea
X-ray Structure Analysis Online, 2020, 36, 1-2
1557221 CIFC398.15 H435.65 B16 Co8 F64 N74.85 O39.35C 1 2/c 132.77108; 30.00687; 40.3365
90; 96.1279; 90
39438.6Mozaceanu,; Taylor,; Piper,; Argent,; Ward,
Catalysis of an Aldol Condensation Using a Coordination Cage
Chemistry, 2020, 2, 22-32
1557222 CIFC20 H12 Cu N2 O4P 1 21/c 15.6674; 10.9072; 14.5876
90; 93.491; 90
900.07He, Tengjiao; Xiao, Yonghou; Zhao, Qidong; Zhou, Mengxue; He, Gaohong
Ultramicroporous Metal‒Organic Framework Qc-5-Cu for Highly Selective Adsorption of CO2 from C2H4 Stream
Industrial & Engineering Chemistry Research, 2020
1557223 CIFC55.6 H49 Br2 Cl2 Cu F6 N2 O1.9 P3P -110.93; 14.2927; 19.2894
70.366; 86.491; 73.206
2715Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557224 CIFC49 H36 Br2 Cl2 Cu F6 N2 O P3P -112.4032; 18.9805; 22.0591
70.33; 77.791; 87.292
4777.9Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557225 CIFC50 H39 Br2 Cu F6 N2 O1.5 P3P -115.1949; 18.5322; 18.5423
107.867; 104.444; 101.088
4603.2Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557226 CIFC54.9 H47.2 Br2 Cl2.2 Cu F6 N2 O1.7 P3P -110.1768; 13.7504; 20.1505
90.204; 98.12; 99.535
2751.9Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557227 CIFC52.1 H40.2 Br2 Cl2.2 Cu F6 N2 O P3C 1 2/m 133.3182; 14.105; 11.8205
90; 102.059; 90
5432.5Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557228 CIFC101 H48 F40 N12 Ni O7P n a 2127.571; 19.7599; 19.1951
90; 90; 90
10457.5Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557229 CIFC89.5 H19 Cl Cu F40 N8 Ni O3C 1 2/c 147.886; 13.8742; 28.061
90; 119.602; 90
16210Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557230 CIFC89 H22 F40 N8 O3P -111.6188; 14.403; 26.7956
82.937; 77.65; 70.954
4133.7Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557231 CIFC97 H32 F40 N12 Ni O3P -114.057; 14.08; 24.646
92.257; 101.581; 108.23
4511.4Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557232 CIFC89 H18 Cu F40 N8 Ni O3P -114.0363; 14.1385; 24.8547
91.904; 101.174; 107.743
4586.3Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557233 CIFS8 V7P 32 2 16.689; 6.689; 17.403
90; 90; 120
674.3Bindi,; Zaccarini,; Ifandi,; Tsikouras,; Stanley,; Garuti,; Mauro,
Grammatikopoulosite, NiVP, a New Phosphide from the Chromitite of the Othrys Ophiolite, Greece
Minerals, 2020, 10, 131
1557234 CIFC61 H90 Au2 Cl2 F12 N2 P2 Sb2P 1 21/n 110.4398; 18.5854; 16.9617
90; 94.354; 90
3281.5Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557235 CIFC34 H50 Au Cl2 F6 N O P SbP 1 21/c 110.9121; 17.7644; 19.509
90; 104.904; 90
3654.5Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557236 CIFC33 H48 Au Cl2 F6 N O2 P SbP 1 21 114.8546; 12.2517; 20.5946
90; 99.848; 90
3692.9Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557237 CIFC21 H20 N4 O5P 1 21/c 115.4212; 13.4652; 9.4134
90; 102.515; 90
1908.2Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557238 CIFC29 H36 Au B10 Cl2 F6 P2 SbP 1 n 110.0221; 13.3021; 14.7578
90; 95.633; 90
1957.94Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557239 CIFC38 H47 Au F6 N2 O2 P SbP 1 21/c 110.7728; 11.143; 30.591
90; 98.974; 90
3627.2Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557240 CIFC10 H16 Br4 SeC 1 2/c 120.9331; 6.0827; 15.253
90; 132.9; 90
1422.72Potapov, Vladimir A.; Musalov, Maxim V.; Kurkutov, Evgeny O.; Yakimov, Vladimir A.; Khabibulina, Alfiya G.; Musalova, Maria V.; Amosova, Svetlana V.; Borodina, Tatyana N.; Albanov, Alexander I.
Remarkable Alkene-to-Alkene and Alkene-to-Alkyne Transfer Reactions of Selenium Dibromide and PhSeBr. Stereoselective Addition of Selenium Dihalides to Cycloalkenes.
Molecules (Basel, Switzerland), 2020, 25, 194
1557241 CIFC10 H16 Cl4 SeC 1 2/c 120.6655; 6.0655; 14.7555
90; 133.69; 90
1337.4Potapov, Vladimir A.; Musalov, Maxim V.; Kurkutov, Evgeny O.; Yakimov, Vladimir A.; Khabibulina, Alfiya G.; Musalova, Maria V.; Amosova, Svetlana V.; Borodina, Tatyana N.; Albanov, Alexander I.
Remarkable Alkene-to-Alkene and Alkene-to-Alkyne Transfer Reactions of Selenium Dibromide and PhSeBr. Stereoselective Addition of Selenium Dihalides to Cycloalkenes.
Molecules (Basel, Switzerland), 2020, 25, 194
1557242 CIFC23 H19 Co N2 O7 SP -19.1273; 12.0439; 12.0526
62.4993; 75.9211; 79.9212
1136.88Chhetri, Pradhumna Mahat; Wu, Ming-Hao; Hsieh, Chou-Ting; Yang, Xiang-Kai; Wu, Chen-Ming; Yang, En-Che; Wang, Chih-Chieh; Chen, Jhy-Der
A Pair of Co<sup>II</sup> Supramolecular Isomers Based on Flexible Bis-Pyridyl-Bis-Amide and Angular Dicarboxylate Ligands.
Molecules (Basel, Switzerland), 2020, 25, 201
1557243 CIFC23.5 H22 Co N2 O8 SP -19.2206; 11.0642; 13.345
96.611; 109.696; 103.697
1216.7Chhetri, Pradhumna Mahat; Wu, Ming-Hao; Hsieh, Chou-Ting; Yang, Xiang-Kai; Wu, Chen-Ming; Yang, En-Che; Wang, Chih-Chieh; Chen, Jhy-Der
A Pair of Co<sup>II</sup> Supramolecular Isomers Based on Flexible Bis-Pyridyl-Bis-Amide and Angular Dicarboxylate Ligands.
Molecules (Basel, Switzerland), 2020, 25, 201
1557244 CIFC90 H126 Mn3 N12 O27P 1 21/m 112.323; 32.145; 12.931
90; 93.58; 90
5112Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557245 CIFC84 H84 Cl18 Mn3 N12 O12P 1 21/m 112.313; 31.877; 12.954
90; 92.93; 90
5078Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557246 CIFC105 H103.5 Mn3 N12 O12P -112.276; 12.869; 31.586
93.98; 97.43; 92.02
4931Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557247 CIFC111 H138 Mn3 N12 O21P -112.457; 13.242; 33.037
86.69; 86.08; 85.22
5411Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557248 CIFC97 H126 Mn3 N12 O18P -112.364; 12.947; 30.366
99.4; 97.35; 91.57
4750.4Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557249 CIFC93 H120 Mn3 N12 O21P 1 21/m 112.274; 32.826; 12.93
90; 95.51; 90
5186Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557250 CIFC97.5 H111 Mn3 N12 O19.5P 1 21/m 112.307; 31.637; 13.006
90; 92.1; 90
5061Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557251 CIFC111 H106 Cl2 Mn3 N12 O16 Rh2P 1 21/c 112.339; 33.798; 25.762
90; 96.1; 90
10683Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557252 CIF
HKL
Paper
C29 H23 Cl N2 OP 1 21/n 19.0627; 10.7595; 24.4636
90; 100.599; 90
2344.7Shraddha, K. N.; Devika, S.; Begum, Noor Shahina
4-Chloro-2-[1-(4-ethylphenyl)-4,5-diphenyl-1<i>H</i>-imidazol-2-yl]phenol
IUCrData, 2020, 5, x191690
1557253 CIFC54 H99 Am Br3 O3 P3P c a 2128.768; 11.456; 18.185
90; 90; 90
5993Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557254 CIFC54 H99 Br3 Nd O3 P3P c a 2128.7058; 11.4228; 18.1359
90; 90; 90
5946.8Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557255 CIFC54 H99 Br3 Ce O3 P3P c a 2128.92; 11.434; 18.209
90; 90; 90
6021.2Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557256 CIFC54 H99 Br3 La O3 P3P c a 2128.879; 11.4223; 18.2083
90; 90; 90
6006.3Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557257 CIFC54 H99 Br3 O3 P3 PrP c a 2128.7155; 11.4126; 18.1299
90; 90; 90
5941.5Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557258 CIFC34 H76 Cl4 Cu3 N12 O21P -6 2 m13.093; 13.093; 8.631
90; 90; 120
1281.4Springborg, Johan; Glerup, Jorgen; Sotofte, Inger
Synthesis and Crystal Structure of a Compound with Three [24.31]Adamanzanecopper(II) Species Coordinated to One Carbonate Ion, mu3-Carbonatotris{1,4,7,10-tetraazabicyclo[5.5.3]pentadecanecopper(II)} Perchlorate Dihydrate.
Acta Chemica Scandinavica, 1997, 51, 832-838
1557259 CIFC13 H9 N3 O7 SC 1 2/c 129.207; 12.714; 19.984
90; 128.94; 90
5771.9Butts, Craig P.; Eberson, Lennart; Hartshorn, Michael P.; Radner, Finn; Robinson, Ward T.; Wood, Bryan R.
Regiochemistry of the Reaction between Dibenzothiophene Radical Cation and Nucleophiles or Nitrogen Dioxide
Acta Chemica Scandinavica, 1997, 51, 839-848
1557260 CIFCr H9 N12P 17.661; 10.19; 5.807
93.58; 101.37; 81.3
439.1Dossing, Anders; Engberg, Pernille; Hazell, Rita
Crystal Structures and Nitrosation Reactions of Triamminetriazido Complexes of Chromium(III)
Acta Chemica Scandinavica, 1997, 51, 849-854

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