Crystallography Open Database

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7054707 CIFC102 H90 N16 O19 Pb2 TbP 1 21/n 112.3263; 20.7018; 18.2517
90; 91.642; 90
4655.49Pan, Mei; Yan, Cheng; Chen, Ling; Zhang, Lu-Yin; Yin, Shao-Yun; Zhu, Yi-Xuan; Wu, Kai; Hou, Ya-Jun; Su, Cheng-Yong
Photoluminescence and white-light emission in two series of heteronuclear Pb(ii)‒Ln(iii) complexes
New J. Chem., 2015, 39, 3770
7054708 CIFC102 H90 Eu N16 O19 Pb2P 1 21/n 112.31597; 20.8623; 18.2267
90; 91.689; 90
4681.12Pan, Mei; Yan, Cheng; Chen, Ling; Zhang, Lu-Yin; Yin, Shao-Yun; Zhu, Yi-Xuan; Wu, Kai; Hou, Ya-Jun; Su, Cheng-Yong
Photoluminescence and white-light emission in two series of heteronuclear Pb(ii)‒Ln(iii) complexes
New J. Chem., 2015, 39, 3770
7054709 CIFC108 H100 N20 O28 Pb Tb2P -111.7061; 13.0527; 17.955
87.73; 88.01; 89.886
2739.65Pan, Mei; Yan, Cheng; Chen, Ling; Zhang, Lu-Yin; Yin, Shao-Yun; Zhu, Yi-Xuan; Wu, Kai; Hou, Ya-Jun; Su, Cheng-Yong
Photoluminescence and white-light emission in two series of heteronuclear Pb(ii)‒Ln(iii) complexes
New J. Chem., 2015, 39, 3770
7054710 CIFC36 H42 Cl2 N8 O10 Ru SP -111.0785; 11.9068; 16.6733
76.422; 75.205; 79.014
2047Bhat, Satish S.; Revankar, Vidyanand K.; Khan, Ayesha; Butcher, Raymond J.; Thatipamula, Krishnachary
Supramolecular architecture and photophysical and biological properties of ruthenium(ii) polypyridyl complexes
New J. Chem., 2015, 39, 3646
7054711 CIFC18 H17 Cu Mo4 N6 O14P 1 21/c 110.6473; 19.752; 13.407
90; 113.396; 90
2587.7Li, Shaobin; Zhang, Li; Ma, Huiyuan; Pang, Haijun; Zhao, Chunyan
Tuning the topology structures of polymolybdate-based hybrids from interpenetrated framework to interdigitated architecture via changing polymolybdate clusters
New J. Chem., 2015, 39, 3528
7054712 CIFC36 H40 Cu Mo12 N12 O44 PP -111.158; 12.946; 13.292
97.478; 112.381; 104.018
1668.8Li, Shaobin; Zhang, Li; Ma, Huiyuan; Pang, Haijun; Zhao, Chunyan
Tuning the topology structures of polymolybdate-based hybrids from interpenetrated framework to interdigitated architecture via changing polymolybdate clusters
New J. Chem., 2015, 39, 3528
7054713 CIFC48 H44 Cu4 Mo12 N16 O42 SiP -110.9784; 14.048; 14.5469
110.234; 107.408; 102.658
1873.7Li, Shaobin; Zhang, Li; Ma, Huiyuan; Pang, Haijun; Zhao, Chunyan
Tuning the topology structures of polymolybdate-based hybrids from interpenetrated framework to interdigitated architecture via changing polymolybdate clusters
New J. Chem., 2015, 39, 3528
7054714 CIFC4 H4 O2P -15.0156; 6.9262; 7.0836
112.956; 97.227; 107.388
207.85Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054715 CIFC4 H4 O2P -15.0359; 6.9758; 7.1152
112.963; 97.033; 107.706
210.8Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054716 CIFC4 H4 O2P -15.058; 7.0169; 7.1325
112.92; 96.962; 108.002
213.14Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054717 CIFC4 H4 O2P -15.0673; 7.0638; 7.163
113.064; 96.689; 108.347
215.3Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054718 CIFC4 H4 O2P 1 21 13.9158; 7.1104; 7.871
90; 100.59; 90
215.42Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054719 CIFC4 H4 O2P 1 21 13.8248; 7.0987; 7.7801
90; 101.058; 90
207.32Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054720 CIFC4 H4 O2P 1 21 13.8518; 7.0956; 7.7924
90; 100.862; 90
209.16Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054721 CIFC4 H4 O2P 1 21 13.8856; 7.1138; 7.8353
90; 100.93; 90
212.65Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054722 CIFC4 H4 O2P 1 21 13.8912; 7.1141; 7.8453
90; 100.8; 90
213.33Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054723 CIFC4 H4 O2P 1 21 13.9127; 7.1074; 7.8489
90; 100.422; 90
214.67Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054724 CIFC4 H4 O2P 1 21 13.9417; 7.1096; 7.878
90; 100.25; 90
217.25Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054725 CIFC20 H28 N2 O S2P -18.9476; 10.2758; 12.1482
98.043; 95.114; 110.648
1023.3Tarakci, Deniz Kutlu; Berber, Savaş; Zorlu, Yunus; Atilla, Devrim; Ahsen, Vefa; Dumoulin, Fabienne
The synthesis of an octasubstituted monohydroxylated phthalocyanine designed to investigate the effect of the presence of active moieties
New J. Chem., 2015, 39, 3929
7054726 CIFC10 H15 N4 O6 PP b c a8.8012; 13.0262; 25.0491
90; 90; 90
2871.8Gholivand, Khodayar; Molaei, Foroogh
Synthesis and structural study of some new phosphorus(v) hydrazide compounds: spectroscopic evidence and a theoretical approach
New J. Chem., 2015, 39, 3747
7054727 CIFC14 H15 N2 O5 PP -15.757; 8.9928; 14.7059
78.99; 86.504; 87.806
745.67Gholivand, Khodayar; Molaei, Foroogh
Synthesis and structural study of some new phosphorus(v) hydrazide compounds: spectroscopic evidence and a theoretical approach
New J. Chem., 2015, 39, 3747
7054728 CIFC10 H15 N4 O5 PP 1 21/c 112.2908; 7.0588; 17.6586
90; 109.425; 90
1444.82Gholivand, Khodayar; Molaei, Foroogh
Synthesis and structural study of some new phosphorus(v) hydrazide compounds: spectroscopic evidence and a theoretical approach
New J. Chem., 2015, 39, 3747
7054729 CIFC20 H19 Cl N4 O4P 1 21/c 111.2664; 13.069; 13.687
90; 90.327; 90
2015.2Senwar, Kishna Ram; Sharma, Pankaj; Nekkanti, Shalini; Manda, Sathish; Kamal, Ahmed; Balasubramanian, Sridhar; Nagula, Shankaraiah
One-pot ‘click’ reaction from spiro-epoxides catalyzed by Cu(I)-pyrrolidinyl-oxazole-carboxamide
New J. Chem., 2015, 39, 3973-3981
7054730 CIFC68 H64 Cl6 N4 O4 SnP -114.632; 15.057; 15.61
85.153; 63.131; 86.091
3055.1Dey, Soumyajit; Mondal, Pritam; Rath, Sankar Prasad
Aggregation-Controlled Excimer Emission in an Axial Anthracene-Sn(IV)Porphyrin-Anthracene Triad in Solid and Solution Phases
New J. Chem., 2015, 39, 4100-4108
7054731 CIFC18 H31 Cl Ni O3 P2P -112.2454; 14.3018; 14.9082
71.876; 69.05; 71.933
2258.4García-Eleno, Marco A.; Padilla-Mata, Esteban; Estudiante-Negrete, Fabiola; Pichal-Cerda, Francisco; Hernández-Ortega, Simón; Toscano, Rubén A.; Morales-Morales, David
Single step, high yield synthesis of para-hydroxy functionalized POCOP ligands and their Ni(ii) pincer derivatives
New J. Chem., 2015, 39, 3361
7054732 CIFC22.5 H40 Cl2 Ni O3 P2P 1 21/n 110.159; 20.23; 13.9587
90; 102.917; 90
2796.2García-Eleno, Marco A.; Padilla-Mata, Esteban; Estudiante-Negrete, Fabiola; Pichal-Cerda, Francisco; Hernández-Ortega, Simón; Toscano, Rubén A.; Morales-Morales, David
Single step, high yield synthesis of para-hydroxy functionalized POCOP ligands and their Ni(ii) pincer derivatives
New J. Chem., 2015, 39, 3361
7054733 CIFC30 H23 Cl Ni O3 P2P 1 21/c 115.125; 10.058; 17.403
90; 90.493; 90
2647.4García-Eleno, Marco A.; Padilla-Mata, Esteban; Estudiante-Negrete, Fabiola; Pichal-Cerda, Francisco; Hernández-Ortega, Simón; Toscano, Rubén A.; Morales-Morales, David
Single step, high yield synthesis of para-hydroxy functionalized POCOP ligands and their Ni(ii) pincer derivatives
New J. Chem., 2015, 39, 3361
7054734 CIFC29 H43 Cl Ni O4 P2P 1 21/c 18.0299; 27.236; 15.128
90; 101.306; 90
3244.3García-Eleno, Marco A.; Padilla-Mata, Esteban; Estudiante-Negrete, Fabiola; Pichal-Cerda, Francisco; Hernández-Ortega, Simón; Toscano, Rubén A.; Morales-Morales, David
Single step, high yield synthesis of para-hydroxy functionalized POCOP ligands and their Ni(ii) pincer derivatives
New J. Chem., 2015, 39, 3361
7054735 CIFC18 H31 Cl Ni O3 P2P -112.2454; 14.3018; 14.9082
71.876; 69.05; 71.933
2258.4Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal‒organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054736 CIFC22.5 H40 Cl2 Ni O3 P2P 1 21/n 110.159; 20.23; 13.9587
90; 102.917; 90
2796.2Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal‒organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054737 CIFC30 H23 Cl Ni O3 P2P 1 21/c 115.125; 10.058; 17.403
90; 90.493; 90
2647.4Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal‒organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054738 CIFC29 H43 Cl Ni O4 P2P 1 21/c 18.0299; 27.236; 15.128
90; 101.306; 90
3244.3Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal‒organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054739 CIFC12 H13 N2 O8 VP -16.7436; 8.14; 13.7971
103.904; 97.539; 95.474
722.45Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal–organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054740 CIFC12 H9 N2 O6 VP -17.9144; 12.5749; 13.4045
88.379; 89.985; 74.931
1287.63Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal–organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054741 CIFC12 H11 N2 O8 VP 1 21/m 17.8481; 6.421; 13.8887
90; 95.055; 90
697.17Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal–organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054742 CIFC12 H12 N3 O7 VP 1 21/m 18.1855; 6.5443; 13.8669
90; 97.755; 90
736.03Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal–organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054743 CIFC12 H10 N3 O6 VP 1 21/c 114.4966; 7.3713; 14.6252
90; 118.696; 90
1370.88Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal–organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054744 CIFC14 H16 N3 O7 VP b c m8.1715; 29.4539; 6.6398
90; 90; 90
1598.08Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal–organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054745 CIFC10 H8 N3 O6 VC 1 2 19.3492; 12.426; 6.436
90; 129.421; 90
577.59Koleša-Dobravc, Tanja; Meden, Anton; Perdih, Franc
Influence of noncovalent interactions on the structures of metal–organic hybrids based on a [VO2(2,6-pydc)]−tecton with cations of imidazole, pyridine and its derivatives
New J. Chem., 2015, 39, 4265
7054746 CIFC20 H46 Co2 K2 N8 O12 S3P -110.7251; 11.4534; 16.074
95.3842; 108.666; 97.8766
1832.96Strianese, Maria; Mirra, Silvia; Bertolasi, Valerio; Milione, Stefano; Pellecchia, Claudio
Organometallic sulfur complexes: reactivity studies of hydrogen sulfide anion with cobaloximes
New J. Chem., 2015, 39, 4093-4099
7054747 CIFC17 H21 B N2 O2P 1 21/c 113.3088; 6.012; 19.833
90; 108.647; 90
1503.59Adamczyk-Woźniak, Agnieszka; Czerwińska, Karolina; Madura, Izabela D.; Matuszewska, Alicja; Sporzyński, Andrzej; Żubrowska-Zembrzuska, Anna
Piperazine derivatives of boronic acids – potential bifunctional biologically active compounds
New J. Chem., 2015, 39, 4308
7054748 CIFC18 H23 B N2 O3I 1 2/a 112.1978; 19.2053; 15.5424
90; 96; 90
3621.05Adamczyk-Woźniak, Agnieszka; Czerwińska, Karolina; Madura, Izabela D.; Matuszewska, Alicja; Sporzyński, Andrzej; Żubrowska-Zembrzuska, Anna
Piperazine derivatives of boronic acids – potential bifunctional biologically active compounds
New J. Chem., 2015, 39, 4308
7054749 CIFC17 H19 B Cl2 N2 O2P -17.9155; 10.313; 11.8333
88.456; 72.897; 69.37
860.88Adamczyk-Woźniak, Agnieszka; Czerwińska, Karolina; Madura, Izabela D.; Matuszewska, Alicja; Sporzyński, Andrzej; Żubrowska-Zembrzuska, Anna
Piperazine derivatives of boronic acids – potential bifunctional biologically active compounds
New J. Chem., 2015, 39, 4308
7054750 CIFC17 H20 B N3 O4P 1 21/n 110.32568; 9.10656; 18.03844
90; 90.7068; 90
1696.05Adamczyk-Woźniak, Agnieszka; Czerwińska, Karolina; Madura, Izabela D.; Matuszewska, Alicja; Sporzyński, Andrzej; Żubrowska-Zembrzuska, Anna
Piperazine derivatives of boronic acids – potential bifunctional biologically active compounds
New J. Chem., 2015, 39, 4308
7054751 CIFC12 H21 B N2 O3P n a 2112.87751; 10.18562; 10.36536
90; 90; 90
1359.58Adamczyk-Woźniak, Agnieszka; Czerwińska, Karolina; Madura, Izabela D.; Matuszewska, Alicja; Sporzyński, Andrzej; Żubrowska-Zembrzuska, Anna
Piperazine derivatives of boronic acids – potential bifunctional biologically active compounds
New J. Chem., 2015, 39, 4308
7054752 CIFC27 H33 B N2 O3P 1 21/c 124.60371; 11.76829; 17.52165
90; 93.8287; 90
5061.96Adamczyk-Woźniak, Agnieszka; Czerwińska, Karolina; Madura, Izabela D.; Matuszewska, Alicja; Sporzyński, Andrzej; Żubrowska-Zembrzuska, Anna
Piperazine derivatives of boronic acids – potential bifunctional biologically active compounds
New J. Chem., 2015, 39, 4308
7054753 CIFCs6 O16 P4 Y2P 1 21 110.1897; 10.3703; 10.5504
90; 107.526; 90
1063.11Wang, Ying; Lian, Zhipeng; Su, Xin; Yang, Zhihua; Pan, Shilie; Yan, Qingfeng; Zhang, Fangfang
Cs6RE2(PO4)4(RE = Y and Gd): two new members of the alkali rare-earth double phosphates
New J. Chem., 2015, 39, 4328
7054754 CIFCs6 Gd2 O16 P4P 1 21 110.2819; 10.4257; 10.5785
90; 107.649; 90
1080.6Wang, Ying; Lian, Zhipeng; Su, Xin; Yang, Zhihua; Pan, Shilie; Yan, Qingfeng; Zhang, Fangfang
Cs6RE2(PO4)4(RE = Y and Gd): two new members of the alkali rare-earth double phosphates
New J. Chem., 2015, 39, 4328
7054755 CIFC16 H14 N2 O10 Zn2P 1 21/n 19.0342; 8.2698; 11.623
90; 100.9; 90
852.7Wang, Fengqin; Dong, Caifu; Wang, Chengmiao; Yu, Zongchao; Guo, Shukun; Wang, Zechuan; Zhao, Yongnan; Li, Guodong
Fluorescence detection of aromatic amines and photocatalytic degradation of rhodamine B under UV light irradiation by luminescent metal‒organic frameworks
New J. Chem., 2015, 39, 4437
7054756 CIFC8 H11 Cd N O7P -17.7683; 8.6089; 8.6695
84.04; 76.23; 66.04
514.6Wang, Fengqin; Dong, Caifu; Wang, Chengmiao; Yu, Zongchao; Guo, Shukun; Wang, Zechuan; Zhao, Yongnan; Li, Guodong
Fluorescence detection of aromatic amines and photocatalytic degradation of rhodamine B under UV light irradiation by luminescent metal‒organic frameworks
New J. Chem., 2015, 39, 4437

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