Crystallography Open Database

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1548464 CIFC141 H111 B6 F60 O3 P3P 1 21/n 112.2916; 38.2278; 34.996
90; 90.268; 90
16443.8Wang, Long; Dong, Shunxi; Daniliuc, Constantin G.; Liu, Lei; Grimme, Stefan; Knitsch, Robert; Eckert, Hellmut; Hansen, Michael Ryan; Kehr, Gerald; Erker, Gerhard
Formation of macrocyclic ring systems by carbonylation of trifunctional P/B/B frustrated Lewis pairs.
Chemical science, 2018, 9, 1544-1550
1548465 CIFC144 H72 Mn3 N12 O70 Zr12I m -3 m38.4015; 38.4015; 38.4015
90; 90; 90
56630Gallagher, Audrey T.; Lee, Jung Yoon; Kathiresan, Venkatesan; Anderson, John S.; Hoffman, Brian M.; Harris, T. David
A structurally-characterized peroxomanganese(iv) porphyrin from reversible O<sub>2</sub> binding within a metal-organic framework.
Chemical science, 2018, 9, 1596-1603
1548466 CIFC144 H72 Mn3 N12 O52 Zr12I m -3 m38.672; 38.672; 38.672
90; 90; 90
57835Gallagher, Audrey T.; Lee, Jung Yoon; Kathiresan, Venkatesan; Anderson, John S.; Hoffman, Brian M.; Harris, T. David
A structurally-characterized peroxomanganese(iv) porphyrin from reversible O<sub>2</sub> binding within a metal-organic framework.
Chemical science, 2018, 9, 1596-1603
1548488 CIFC14 H30 Cl4 N4 Ni O4P c a 2112.5175; 13.082; 13.0989
90; 90; 90
2145Craig, Gavin A.; Sarkar, Arup; Woodall, Christopher H.; Hay, Moya A.; Marriott, Katie E. R.; Kamenev, Konstantin V.; Moggach, Stephen A.; Brechin, Euan K.; Parsons, Simon; Rajaraman, Gopalan; Murrie, Mark
Probing the origin of the giant magnetic anisotropy in trigonal bipyramidal Ni(ii) under high pressure.
Chemical science, 2018, 9, 1551-1559
1548489 CIFC14 H30 Cl4 N4 Ni O4P c a 2111.9968; 12.5527; 12.8642
90; 90; 90
1937.2Craig, Gavin A.; Sarkar, Arup; Woodall, Christopher H.; Hay, Moya A.; Marriott, Katie E. R.; Kamenev, Konstantin V.; Moggach, Stephen A.; Brechin, Euan K.; Parsons, Simon; Rajaraman, Gopalan; Murrie, Mark
Probing the origin of the giant magnetic anisotropy in trigonal bipyramidal Ni(ii) under high pressure.
Chemical science, 2018, 9, 1551-1559
1548490 CIFC14 H30 Cl4 N4 Ni O4P c a 2111.9924; 12.5546; 12.8611
90; 90; 90
1936.4Craig, Gavin A.; Sarkar, Arup; Woodall, Christopher H.; Hay, Moya A.; Marriott, Katie E. R.; Kamenev, Konstantin V.; Moggach, Stephen A.; Brechin, Euan K.; Parsons, Simon; Rajaraman, Gopalan; Murrie, Mark
Probing the origin of the giant magnetic anisotropy in trigonal bipyramidal Ni(ii) under high pressure.
Chemical science, 2018, 9, 1551-1559
1548491 CIFC14 H30 Cl4 N4 Ni O4P c a 2112.3181; 12.8429; 13.038
90; 90; 90
2062.61Craig, Gavin A.; Sarkar, Arup; Woodall, Christopher H.; Hay, Moya A.; Marriott, Katie E. R.; Kamenev, Konstantin V.; Moggach, Stephen A.; Brechin, Euan K.; Parsons, Simon; Rajaraman, Gopalan; Murrie, Mark
Probing the origin of the giant magnetic anisotropy in trigonal bipyramidal Ni(ii) under high pressure.
Chemical science, 2018, 9, 1551-1559
1548492 CIFC14 H30 Cl4 N4 Ni O4P c a 2112.2089; 12.7469; 12.9686
90; 90; 90
2018.2Craig, Gavin A.; Sarkar, Arup; Woodall, Christopher H.; Hay, Moya A.; Marriott, Katie E. R.; Kamenev, Konstantin V.; Moggach, Stephen A.; Brechin, Euan K.; Parsons, Simon; Rajaraman, Gopalan; Murrie, Mark
Probing the origin of the giant magnetic anisotropy in trigonal bipyramidal Ni(ii) under high pressure.
Chemical science, 2018, 9, 1551-1559
1548493 CIFC3 H4 Br Cl0 O2 PbP 41 21 29.0035; 9.0035; 14.39
90; 90; 90
1166.5Peng, Chengdong; Zhuang, Zewen; Yang, Huimin; Zhang, Guiyang; Fei, Honghan
Ultrastable, cationic three-dimensional lead bromide frameworks that intrinsically emit broadband white-light.
Chemical science, 2018, 9, 1627-1633
1548494 CIFC4 H4 Br4 O4 Pb3P b c n8.2193; 14.718; 10.7344
90; 90; 90
1298.56Peng, Chengdong; Zhuang, Zewen; Yang, Huimin; Zhang, Guiyang; Fei, Honghan
Ultrastable, cationic three-dimensional lead bromide frameworks that intrinsically emit broadband white-light.
Chemical science, 2018, 9, 1627-1633
1548495 CIFC3 H4 Br O2 PbP 41 21 28.9917; 8.9917; 14.354
90; 90; 90
1160.5Peng, Chengdong; Zhuang, Zewen; Yang, Huimin; Zhang, Guiyang; Fei, Honghan
Ultrastable, cationic three-dimensional lead bromide frameworks that intrinsically emit broadband white-light.
Chemical science, 2018, 9, 1627-1633
1548531 CIFC19 H46 Cl4 Eu N8 O ZnP b c a16.9858; 18.4496; 18.8816
90; 90; 90
5917.1Jenks, Tyler C.; Bailey, Matthew D.; Hovey, Jessica L.; Fernando, Shanilke; Basnayake, Gihan; Cross, Michael E.; Li, Wen; Allen, Matthew J.
First use of a divalent lanthanide for visible-light-promoted photoredox catalysis.
Chemical science, 2018, 9, 1273-1278
1548532 CIFC15 H12 N2C 1 2/c 122.851; 5.7145; 16.97
90; 98.174; 90
2193.5Joost, Maximilian; Transue, Wesley J.; Cummins, Christopher C.
Diazomethane umpolung atop anthracene: an electrophilic methylene transfer reagent.
Chemical science, 2018, 9, 1540-1543
1548533 CIFC27 H41 O2 W0.5P 21 21 215.0937; 17.6924; 9.6626
90; 90; 90
2580.3Joost, Maximilian; Transue, Wesley J.; Cummins, Christopher C.
Diazomethane umpolung atop anthracene: an electrophilic methylene transfer reagent.
Chemical science, 2018, 9, 1540-1543
1548534 CIFC68 H87 O4 P WP -113.4644; 13.7709; 18.7517
106.468; 110.976; 96.554
3021.7Joost, Maximilian; Transue, Wesley J.; Cummins, Christopher C.
Diazomethane umpolung atop anthracene: an electrophilic methylene transfer reagent.
Chemical science, 2018, 9, 1540-1543
1548543 CIFC14 H18 N2 O4P -16.746; 7.246; 7.434
77.801; 83.65; 88.409
353Zeng, Qingying; Mukherjee, Arijit; Müller, Peter; Rogers, Robin D.; Myerson, Allan S.
Exploring the role of ionic liquids to tune the polymorphic outcome of organic compounds.
Chemical science, 2018, 9, 1510-1520
1548565 CIFC37 H51.88 Br4 Co N3 O ZnP 21 21 2112.6608; 17.559; 18.5345
90; 90; 90
4120.4Werth, Jacob; Uyeda, Christopher
Regioselective Simmons-Smith-type cyclopropanations of polyalkenes enabled by transition metal catalysis.
Chemical science, 2018, 9, 1604-1609
1548566 CIFC19 H14 B F6 N OP -19.0343; 10.2063; 11.0348
66.3381; 70.1856; 78.1262
873.89Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548567 CIFC27 H26 B Cl2 N O2P 1 21/n 114.1158; 8.9604; 18.8756
90; 90.0788; 90
2387.44Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548568 CIFC29 H24 B F6 N O2P -110.014; 11.7859; 23.0748
103.818; 98.0649; 96.9376
2584.47Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548569 CIFC18 H6 B3 F9 O3C 1 2/c 112.8358; 12.6583; 12.8851
90; 119.06; 90
1830Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548570 CIFC28 H22 B2 I2 O5P -110.635; 11.4814; 12.2457
83.1389; 87.0947; 64.1817
1336.36Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548571 CIFC29 H28 B Cl2 N O2P -19.2006; 11.4729; 13.1121
101.57; 99.773; 98.085
1314.22Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548572 CIFC26 H18 B F6 N O2P 1 21/n 110.1019; 11.7656; 19.567
90; 103.69; 90
2259.56Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548573 CIFC14.5 H13 B Cl1.5 D0.5 F6 N2 OP 1 c 111.75; 11.0269; 13.1973
90; 97.3307; 90
1695.95Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548574 CIFC25 H15 B3 F9 N O3P -110.372; 11.1795; 12.3123
106.545; 111.492; 96.8493
1232.74Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548575 CIFC18 H6 B3 F9 O3P b c n17.083; 13.093; 7.99
90; 90; 90
1787.1Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548576 CIFC46 H51 B3 N4 O3P 1 21/c 121.212; 11.2705; 18.8494
90; 114.886; 90
4087.9Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548577 CIFC28 H22 B2 Cl2 O5P -110.4296; 11.147; 11.7996
84.748; 87.958; 67.5356
1262.39Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548578 CIFC32 H33 B3 N2 O3P -111.2396; 15.2054; 17.9361
89.7333; 72.0196; 84.3291
2900.27Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548579 CIFC18 H6 B3 F9 O3C 1 2/c 112.8086; 12.6262; 12.8625
90; 119.598; 90
1808.74Arkhipenko, Sergey; Sabatini, Marco T.; Batsanov, Andrei S.; Karaluka, Valerija; Sheppard, Tom D.; Rzepa, Henry S.; Whiting, Andrew
Mechanistic insights into boron-catalysed direct amidation reactions.
Chemical science, 2018, 9, 1058-1072
1548590 CIFC39 H42 B N OC 1 2/c 138.4003; 9.7146; 18.3058
90; 114.338; 90
6222Shi, Yong-Gang; Wang, Jun-Wei; Li, Haijun; Hu, Guo-Fei; Li, Xue; Mellerup, Soren K.; Wang, Nan; Peng, Tai; Wang, Suning
A simple multi-responsive system based on aldehyde functionalized amino-boranes.
Chemical science, 2018, 9, 1902-1911
1548591 CIFC25 H27 B OP -18.488; 10.8609; 12.4693
97.707; 98.593; 105.796
1075.07Shi, Yong-Gang; Wang, Jun-Wei; Li, Haijun; Hu, Guo-Fei; Li, Xue; Mellerup, Soren K.; Wang, Nan; Peng, Tai; Wang, Suning
A simple multi-responsive system based on aldehyde functionalized amino-boranes.
Chemical science, 2018, 9, 1902-1911
1548592 CIFC27 H32 B N OP 1 21/n 112.3452; 9.0371; 20.4924
90; 91.199; 90
2285.7Shi, Yong-Gang; Wang, Jun-Wei; Li, Haijun; Hu, Guo-Fei; Li, Xue; Mellerup, Soren K.; Wang, Nan; Peng, Tai; Wang, Suning
A simple multi-responsive system based on aldehyde functionalized amino-boranes.
Chemical science, 2018, 9, 1902-1911
1548593 CIFC28 H34 B N OP 1 21/c 110.146; 16.684; 16.55
90; 103.602; 90
2722.9Shi, Yong-Gang; Wang, Jun-Wei; Li, Haijun; Hu, Guo-Fei; Li, Xue; Mellerup, Soren K.; Wang, Nan; Peng, Tai; Wang, Suning
A simple multi-responsive system based on aldehyde functionalized amino-boranes.
Chemical science, 2018, 9, 1902-1911
1548594 CIFC23 H37 B N2 Se2P 1 21/c 117.551; 15.552; 17.729
90; 93.183; 90
4832Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548595 CIFC49 H70 B2 N4 SP 1 21/c 118.966; 13.037; 18.816
90; 97.143; 90
4616.3Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548596 CIFC50 H78 B2 N4 O2 Se3C 1 2/c 116.059; 17.563; 17.928
90; 103.042; 90
4926.1Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548597 CIFC50 H78 B2 N4 O2 S3C 1 2/c 115.945; 17.53; 17.924
90; 102.905; 90
4883.5Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548598 CIFC37 H49 B N2 O Se2P 1 21/n 110.784; 16.852; 19.026
90; 91.03; 90
3457Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548599 CIFC48 H68 B2 N4 S2P -18.8508; 8.8654; 14.6186
75.639; 86.11; 80.401
1095.24Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548600 CIFC42 H62 B2 N4 SeP b c a17.8352; 16.7797; 28.365
90; 90; 90
8488.8Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548601 CIFC54 H86 B2 N4 O3 S4P b c a16.39; 17.61; 38.28
90; 90; 90
11049Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548602 CIFC37 H49 B N2 O S2P 1 21/n 110.672; 16.818; 18.902
90; 91.75; 90
3391Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548603 CIFC24 H34 B N2 SeP -18.8289; 8.8405; 14.667
85.939; 75.916; 79.987
1093Auerhammer, Dominic; Arrowsmith, Merle; Dewhurst, Rian D.; Kupfer, Thomas; Böhnke, Julian; Braunschweig, Holger
Closely related yet different: a borylene and its dimer are non-interconvertible but connected through reactivity.
Chemical science, 2018, 9, 2252-2260
1548613 CIFC17 H14 Br N OP 21 21 216.1624; 7.7041; 30.136
90; 90; 90
1430.7Luo, Hongwen; Yang, Zheng; Lin, Weilong; Zheng, Yangguangyan; Ma, Shengming
A catalytic highly enantioselective allene approach to oxazolines.
Chemical science, 2018, 9, 1964-1969
1548614 CIFC33 H37.5 B I2 N OP 1 21/n 113.751; 16.557; 28.155
90; 93.121; 90
6401Qi, Yanyu; Xu, Wenjun; Kang, Rui; Ding, Nannan; Wang, Yelei; He, Gang; Fang, Yu
Discrimination of saturated alkanes and relevant volatile compounds <i>via</i> the utilization of a conceptual fluorescent sensor array based on organoboron-containing polymers.
Chemical science, 2018, 9, 1892-1901
1548615 CIFC35.5 H61 Li Ni O8.25P -111.4664; 24.2697; 28.3765
67.455; 88.576; 85.754
7273.2Iwasaki, Takanori; Fukuoka, Asuka; Yokoyama, Wataru; Min, Xin; Hisaki, Ichiro; Yang, Tao; Ehara, Masahiro; Kuniyasu, Hitoshi; Kambe, Nobuaki
Nickel-catalyzed coupling reaction of alkyl halides with aryl Grignard reagents in the presence of 1,3-butadiene: mechanistic studies of four-component coupling and competing cross-coupling reactions.
Chemical science, 2018, 9, 2195-2211
1548634 CIFC19 H27 N O SP b c a13.4779; 8.1983; 31.894
90; 90; 90
3524.2Shen, Xianwang; Gong, Honghong; Zhou, Yang; Zhao, Yucheng; Lin, Jun; Chen, Mao
Unsymmetrical difunctionalization of cyclooctadiene under continuous flow conditions: expanding the scope of ring opening metathesis polymerization.
Chemical science, 2018, 9, 1846-1853
1548635 CIFC23 H24 O2P 21 21 219.7798; 10.6568; 17.5257
90; 90; 90
1826.55Zheng, Xinxin; Guo, Rui; Zhang, Guozhu; Zhang, Dayong
Rhodium(i)-catalyzed asymmetric [4 + 2] cycloaddition reactions of 2-alkylenecyclobutanols with cyclic enones through C-C bond cleavage: efficient access to <i>trans</i>-bicyclic compounds.
Chemical science, 2018, 9, 1873-1877
1548636 CIFC8 H14 Ag N O4P 21 21 217.786; 8.024; 16.081
90; 90; 90
1004.7Fang, Yinzhi; Zhang, Han; Huang, Zhen; Scinto, Samuel L.; Yang, Jeffrey C.; Am Ende, Christopher W.; Dmitrenko, Olga; Johnson, Douglas S.; Fox, Joseph M.
Photochemical syntheses, transformations, and bioorthogonal chemistry of <i>trans</i>-cycloheptene and sila <i>trans</i>-cycloheptene Ag(i) complexes.
Chemical science, 2018, 9, 1953-1963
1548637 CIFC18 H20 Ag N O3 SiP 1 21/c 116.509; 8.4282; 13.9655
90; 114.69; 90
1765.53Fang, Yinzhi; Zhang, Han; Huang, Zhen; Scinto, Samuel L.; Yang, Jeffrey C.; Am Ende, Christopher W.; Dmitrenko, Olga; Johnson, Douglas S.; Fox, Joseph M.
Photochemical syntheses, transformations, and bioorthogonal chemistry of <i>trans</i>-cycloheptene and sila <i>trans</i>-cycloheptene Ag(i) complexes.
Chemical science, 2018, 9, 1953-1963
1548638 CIFC30.71 H44.57 Br1.14 Fe N2 O2.86I 1 a 115.186; 13.4178; 17.1643
90; 112.449; 90
3232.4Fleischauer, Valerie E.; Muñoz Iii, Salvador B; Neate, Peter G. N.; Brennessel, William W.; Neidig, Michael L.
NHC and nucleophile chelation effects on reactive iron(ii) species in alkyl-alkyl cross-coupling.
Chemical science, 2018, 9, 1878-1891
1548639 CIFC39 H60 Fe N2 O4P -110.0953; 10.9483; 17.657
88.7501; 75.1691; 88.9205
1885.9Fleischauer, Valerie E.; Muñoz Iii, Salvador B; Neate, Peter G. N.; Brennessel, William W.; Neidig, Michael L.
NHC and nucleophile chelation effects on reactive iron(ii) species in alkyl-alkyl cross-coupling.
Chemical science, 2018, 9, 1878-1891
1548640 CIFC33 H46 Fe N2 O4C 1 c 111.2603; 22.9235; 16.1864
90; 103.878; 90
4056.2Fleischauer, Valerie E.; Muñoz Iii, Salvador B; Neate, Peter G. N.; Brennessel, William W.; Neidig, Michael L.
NHC and nucleophile chelation effects on reactive iron(ii) species in alkyl-alkyl cross-coupling.
Chemical science, 2018, 9, 1878-1891
1548651 CIFC250.5 H168.5 B5 Co6 F41 N47 O21.25 S7P -121.2508; 21.6182; 39.5929
93.208; 101.624; 118.521
15407.3Rizzuto, Felix J.; Kieffer, Marion; Nitschke, Jonathan R.
Quantified structural speciation in self-sorted CoII6L<sub>4</sub> cage systems.
Chemical science, 2018, 9, 1925-1930
1548652 CIFC273 H263.5 B60.5 Co6 F19.5 N62.5 O20.5 S6.5P -125.0303; 26.7592; 34.5514
68.113; 88.8092; 66.5154
19472.1Rizzuto, Felix J.; Kieffer, Marion; Nitschke, Jonathan R.
Quantified structural speciation in self-sorted CoII6L<sub>4</sub> cage systems.
Chemical science, 2018, 9, 1925-1930
1548653 CIFC92 H130 Cl2 N4 Ni2 O5P 1 21/n 115.5829; 39.582; 16.2027
90; 110.448; 90
9364.1Clarke, Ryan M.; Jeen, Tiffany; Rigo, Serena; Thompson, John R.; Kaake, Loren G.; Thomas, Fabrice; Storr, Tim
Exploiting exciton coupling of ligand radical intervalence charge transfer transitions to tune NIR absorption.
Chemical science, 2018, 9, 1610-1620
1548654 CIFC72 H96 N6 Ni2 O4P -111.4567; 13.1358; 25.5529
82.482; 89.48; 67.19
3510.7Clarke, Ryan M.; Jeen, Tiffany; Rigo, Serena; Thompson, John R.; Kaake, Loren G.; Thomas, Fabrice; Storr, Tim
Exploiting exciton coupling of ligand radical intervalence charge transfer transitions to tune NIR absorption.
Chemical science, 2018, 9, 1610-1620
1548655 CIFC89 H139 N4 Ni2 O4P b c a29.9305; 12.1234; 47.9429
90; 90; 90
17396.5Clarke, Ryan M.; Jeen, Tiffany; Rigo, Serena; Thompson, John R.; Kaake, Loren G.; Thomas, Fabrice; Storr, Tim
Exploiting exciton coupling of ligand radical intervalence charge transfer transitions to tune NIR absorption.
Chemical science, 2018, 9, 1610-1620
1548656 CIFC192 H133 Ca2 O29 P4P 21 21 2113.7157; 21.388; 65.483
90; 90; 90
19209.5Uno, Brice E.; Dicken, Rachel D.; Redfern, Louis R.; Stern, Charlotte M.; Krzywicki, Greg G.; Scheidt, Karl A.
Calcium(ii)-catalyzed enantioselective conjugate additions of amines.
Chemical science, 2018, 9, 1634-1639
1548657 CIFC18 H17 Br N2 O2P 14.681; 6.1091; 14.2048
100.603; 92.652; 94.55
397.25Uno, Brice E.; Dicken, Rachel D.; Redfern, Louis R.; Stern, Charlotte M.; Krzywicki, Greg G.; Scheidt, Karl A.
Calcium(ii)-catalyzed enantioselective conjugate additions of amines.
Chemical science, 2018, 9, 1634-1639
1548659 CIFC78 H78 B2 Fe2 N8 O2 P2 Zn2P 1 2/c 113.855; 9.378; 30.742
90; 101.648; 90
3912.1Abubekerov, Mark; Wei, Junnian; Swartz, Kevin R.; Xie, Zhixin; Pei, Qibing; Diaconescu, Paula L.
Preparation of multiblock copolymers <i>via</i> step-wise addition of l-lactide and trimethylene carbonate.
Chemical science, 2018, 9, 2168-2178
1548660 CIFC27 H35 B9 Hf2P 1 21/c 117.2181; 12.9003; 14.6113
90; 110.082; 90
3048.1De, Anangsha; Zhang, Qian-Fan; Mondal, Bijan; Cheung, Ling Fung; Kar, Sourav; Saha, Koushik; Varghese, Babu; Wang, Lai-Sheng; Ghosh, Sundargopal
[(Cp<sub>2</sub>M)<sub>2</sub>B<sub>9</sub>H<sub>11</sub>] (M = Zr or Hf): early transition metal 'guarded' heptaborane with strong covalent and electrostatic bonding.
Chemical science, 2018, 9, 1976-1981
1548661 CIFC27 H39 B9 Zr2P 1 21/c 117.2544; 12.8796; 14.6295
90; 109.855; 90
3057.85De, Anangsha; Zhang, Qian-Fan; Mondal, Bijan; Cheung, Ling Fung; Kar, Sourav; Saha, Koushik; Varghese, Babu; Wang, Lai-Sheng; Ghosh, Sundargopal
[(Cp<sub>2</sub>M)<sub>2</sub>B<sub>9</sub>H<sub>11</sub>] (M = Zr or Hf): early transition metal 'guarded' heptaborane with strong covalent and electrostatic bonding.
Chemical science, 2018, 9, 1976-1981
1548662 CIFC20 H24 B5 Hf2P 1 c 19.3061; 7.8838; 14.9171
90; 100.72; 90
1075.33De, Anangsha; Zhang, Qian-Fan; Mondal, Bijan; Cheung, Ling Fung; Kar, Sourav; Saha, Koushik; Varghese, Babu; Wang, Lai-Sheng; Ghosh, Sundargopal
[(Cp<sub>2</sub>M)<sub>2</sub>B<sub>9</sub>H<sub>11</sub>] (M = Zr or Hf): early transition metal 'guarded' heptaborane with strong covalent and electrostatic bonding.
Chemical science, 2018, 9, 1976-1981
1548696 CIFC12 H20 B10P 1 21/n 110.039; 14.627; 11.432
90; 96.919; 90
1666.5Chan, Tek Long; Xie, Zuowei
Synthesis, structure and aromaticity of carborane-fused carbo- and heterocycles.
Chemical science, 2018, 9, 2284-2289
1548697 CIFC5 H14 B10 SP 1 21/n 111.7439; 8.5035; 12.5486
90; 108.228; 90
1190.27Chan, Tek Long; Xie, Zuowei
Synthesis, structure and aromaticity of carborane-fused carbo- and heterocycles.
Chemical science, 2018, 9, 2284-2289
1548698 CIFC5 H16 B10 O2P 21 21 216.955; 10.8072; 16.754
90; 90; 90
1259.3Chan, Tek Long; Xie, Zuowei
Synthesis, structure and aromaticity of carborane-fused carbo- and heterocycles.
Chemical science, 2018, 9, 2284-2289
1548699 CIFC6 H17 B10 NP 1 21/n 111.9424; 8.5259; 13.3359
90; 108.729; 90
1286Chan, Tek Long; Xie, Zuowei
Synthesis, structure and aromaticity of carborane-fused carbo- and heterocycles.
Chemical science, 2018, 9, 2284-2289
1548700 CIFC14 H19 B10 NP -18.9977; 9.8055; 11.2475
87.61; 66.4692; 73.9029
871.46Chan, Tek Long; Xie, Zuowei
Synthesis, structure and aromaticity of carborane-fused carbo- and heterocycles.
Chemical science, 2018, 9, 2284-2289
1548701 CIFC36 H67 B10 Li O10P -111.9668; 12.4954; 14.9348
87.27; 75.356; 88.638
2158Chan, Tek Long; Xie, Zuowei
Synthesis, structure and aromaticity of carborane-fused carbo- and heterocycles.
Chemical science, 2018, 9, 2284-2289
1548702 CIFC29 H25 N O3 SP 1 21 19.769; 13.123; 10.039
90; 114.345; 90
1172.5Zhou, Leijie; Yuan, Chunhao; Zeng, Yuan; Liu, Honglei; Wang, Chang; Gao, Xing; Wang, Qijun; Zhang, Cheng; Guo, Hongchao
Phosphine-catalyzed [5+1] annulation of δ-sulfonamido-substituted enones with <i>N</i>-sulfonylimines: a facile synthesis of tetrahydropyridines.
Chemical science, 2018, 9, 1831-1835
1548722 CIFC12 H15 O PP 21 21 218.6681; 10.3977; 11.4123
90; 90; 90
1028.57Zhang, Kui; Cai, Lingchao; Yang, Zhongyue; Houk, K. N.; Kwon, Ohyun
Bridged [2.2.1] bicyclic phosphine oxide facilitates catalytic γ-umpolung addition-Wittig olefination.
Chemical science, 2018, 9, 1867-1872
1548738 CIFCl Co H15 N7 O5P n m a14.6048; 7.4486; 9.5237
90; 90; 90
1036.04Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548739 CIFCl Co H15 N7 O5P n m a14.7295; 7.3639; 9.5828
90; 90; 90
1039.41Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548740 CIFCl Co H15 N7 O5P n m a14.7688; 7.3395; 9.5973
90; 90; 90
1040.31Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548741 CIFCl Co H15 N7 O5P n m a14.5868; 7.4684; 9.513
90; 90; 90
1036.35Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548742 CIFCl Co H15 N7 O5P n m a14.471; 7.5428; 9.4556
90; 90; 90
1032.1Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548743 CIFCl Co H15 N7 O5P n m a14.7589; 7.348; 9.5909
90; 90; 90
1040.12Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548744 CIFCl Co H15 N7 O5P n m a14.5467; 7.4933; 9.4931
90; 90; 90
1034.77Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548745 CIFCl Co H15 N7 O5P n m a14.6615; 7.4138; 9.5536
90; 90; 90
1038.45Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548746 CIFCl Co H15 N7 O5P n m a14.7005; 7.3877; 9.5676
90; 90; 90
1039.07Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548747 CIFCl Co H15 N7 O5P n m a14.6166; 7.4465; 9.5286
90; 90; 90
1037.12Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548748 CIFCl Co H15 N7 O5P n m a14.4836; 7.5409; 9.4574
90; 90; 90
1032.93Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548749 CIFCl Co H15 N7 O5P n m a14.8308; 7.2957; 9.6188
90; 90; 90
1040.76Chizhik, Stanislav; Sidelnikov, Anatoly; Zakharov, Boris; Naumov, Panče; Boldyreva, Elena
Quantification of photoinduced bending of dynamic molecular crystals: from macroscopic strain to kinetic constants and activation energies.
Chemical science, 2018, 9, 2319-2335
1548752 CIFC34 H33 F4 Mg N3P c a 2124.8934; 13.45834; 18.5282
90; 90; 90
6207.39Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548753 CIFC58.5 H81 Mg N4 ZnP -111.7887; 12.0703; 21.6822
80.152; 74.593; 66.945
2729Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548754 CIFC81 H115 F3 Mg3 N6P -114.5708; 14.6964; 18.2421
91.379; 93.348; 91.651
3896.7Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548755 CIFC35.5 H36.5 F4 Mg N3P -111.8799; 16.0457; 17.2413
83.738; 85.661; 88.935
3257.4Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548756 CIFC59 H84 Mg N6 ZnC 1 2/c 110.18598; 24.1833; 23.1663
90; 99.0832; 90
5635.01Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548757 CIFC46 H58 Mg N4 ZnP 1 2/n 113.4443; 8.2978; 19.6313
90; 102.544; 90
2137.75Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548758 CIFC46.5 H56 F4 N3 ZnI 1 2/a 115.6052; 24.2499; 23.5838
90; 102.23; 90
8722.1Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548759 CIFC56 H78 Mg N4 O ZnP 1 21/n 112.3877; 22.4084; 19.0461
90; 90.149; 90
5287Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548760 CIFC65 H99 Al Mg N4I 1 2/a 121.9257; 15.7003; 37.0659
90; 97.8995; 90
12638.5Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548761 CIFC58 H82 N4 Zn3P 1 21/n 112.7429; 17.3446; 13.026
90; 101.313; 90
2823.07Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548762 CIFC54 H75 Al N4 ZnP 21 21 2113.75991; 13.8927; 26.733
90; 90; 90
5110.34Bakewell, Clare; Ward, Bryan J.; White, Andrew J. P.; Crimmin, Mark R.
A combined experimental and computational study on the reaction of fluoroarenes with Mg-Mg, Mg-Zn, Mg-Al and Al-Zn bonds.
Chemical science, 2018, 9, 2348-2356
1548769 CIFC17 H19 Cl O4P 21 21 216.9832; 8.5007; 26.483
90; 90; 90
1572.1Ngamnithiporn, Aurapat; Jette, Carina I.; Bachman, Shoshana; Virgil, Scott C.; Stoltz, Brian M.
Nickel-catalyzed enantioselective allylic alkylation of lactones and lactams with unactivated allylic alcohols.
Chemical science, 2018, 9, 2547-2551
1548770 CIFC17 H6 Cl7 N2P 1 21/n 18.7015; 14.84; 14.86
90; 105.517; 90
1848.9Kimura, Shun; Tanushi, Akira; Kusamoto, Tetsuro; Kochi, Shuntaro; Sato, Tohru; Nishihara, Hiroshi
A luminescent organic radical with two pyridyl groups: high photostability and dual stimuli-responsive properties, with theoretical analyses of photophysical processes.
Chemical science, 2018, 9, 1996-2007
1548829 CIFC260 H338 Au42 S26P -124.328; 24.845; 32.217
67.732; 76.94; 84.496
17553Zhuang, Shengli; Liao, Lingwen; Zhao, Yan; Yuan, Jinyun; Yao, Chuanhao; Liu, Xu; Li, Jin; Deng, Haiteng; Yang, Jinlong; Wu, Zhikun
Is the kernel-staples match a key-lock match?
Chemical science, 2018, 9, 2437-2442

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