Crystallography Open Database

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Searching year of publication is 2018

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1548431 CIFC40 H50 B2 N2 O4P -18.4242; 15.698; 28.081
89.956; 87.717; 89.896
3710.6Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548432 CIFC49 H59 B2 N3 O4P -110.951; 14.21; 16.118
104.201; 92.6541; 111.94
2228.7Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548433 CIFC54 H69 B2 N3 O2P 1 21/c 110.6242; 20.635; 22.708
90; 100.578; 90
4893.7Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548434 CIFC37 H47 B2 N3 O2P 1 21/n 110.981; 10.43; 28.55
90; 94.578; 90
3259.5Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548435 CIFC37 H47 B2 N3 O2P 1 21/a 115.319; 13.7912; 17.481
90; 112.051; 90
3423Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548436 CIFC38 H48 B2 N2 O2P 1 21/n 18.565; 33.036; 11.991
90; 90.444; 90
3393Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548437 CIFC48 H56 B2 F3 N3 O2P 1 21/n 114.692; 11.21; 27.115
90; 105.567; 90
4302Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548438 CIFC45 H62 B2 N2 O4P -111.4491; 12.8149; 15.929
74.652; 86.76; 65.452
2046.2Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548439 CIFC49 H59 B2 N3 O4P -18.034; 10.856; 26.173
97.069; 97.132; 102.212
2187.4Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548440 CIFC53 H63 B2 N3 O2P -111.821; 12.93; 16.755
101.05; 95.8819; 111.862
2289.8Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548441 CIFC39 H37 B2 F3 N2 O2P 21 21 2116.004; 21.403; 32.93
90; 90; 90
11280Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548442 CIFC39 H47 B2 F3 N2 O2P 1 21/c 114.252; 17.527; 14.877
90; 93.855; 90
3707.8Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548443 CIFC89 H112 B4 N4 O4P -19.894; 12.714; 16.323
101.384; 91.511; 100.757
1973.3Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548444 CIFC38 H47 B2 Cl N2 O2P 1 21/c 110.777; 8.468; 38.298
90; 95.088; 90
3481Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548445 CIFC45 H64 B2 N2 O3P n a 2119.208; 13.253; 16.091
90; 90; 90
4096.2Katsuma, Yuhei; Asakawa, Hiroki; Yamashita, Makoto
Reactivity of highly Lewis acidic diborane(4) towards pyridine and isocyanide: formation of boraalkene-pyridine complex and <i>ortho</i>-functionalized pyridine derivatives.
Chemical science, 2018, 9, 1301-1310
1548455 CIFC22 H25 N O4P 21 21 2110.3192; 11.0867; 17.4057
90; 90; 90
1991.31Carter, Nicholas; Li, Xiabing; Reavey, Lewis; Meijer, Anthony J. H. M.; Coldham, Iain
Synthesis and kinetic resolution of substituted tetrahydroquinolines by lithiation then electrophilic quench.
Chemical science, 2018, 9, 1352-1357
1548456 CIFC20 H23 N O2P 21 21 216.1094; 14.2823; 19.8409
90; 90; 90
1731.24Carter, Nicholas; Li, Xiabing; Reavey, Lewis; Meijer, Anthony J. H. M.; Coldham, Iain
Synthesis and kinetic resolution of substituted tetrahydroquinolines by lithiation then electrophilic quench.
Chemical science, 2018, 9, 1352-1357
1548457 CIFC27 H21 N O2P -17.9717; 9.2791; 14.2492
95.3798; 105.336; 98.2795
996.24Carter, Nicholas; Li, Xiabing; Reavey, Lewis; Meijer, Anthony J. H. M.; Coldham, Iain
Synthesis and kinetic resolution of substituted tetrahydroquinolines by lithiation then electrophilic quench.
Chemical science, 2018, 9, 1352-1357
1548458 CIFC23 H27 N O4P 1 21 19.495; 8.8357; 12.0617
90; 90.258; 90
1011.91Carter, Nicholas; Li, Xiabing; Reavey, Lewis; Meijer, Anthony J. H. M.; Coldham, Iain
Synthesis and kinetic resolution of substituted tetrahydroquinolines by lithiation then electrophilic quench.
Chemical science, 2018, 9, 1352-1357
1548459 CIFC106 H66 B4 F40 O2 P2P n a 2123.2043; 30.9754; 14.803
90; 90; 90
10639.8Wang, 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
1548460 CIFC88 H62 B4 F40 O2 P2P -111.163; 16.2067; 24.8378
76.432; 87.505; 76.034
4238.6Wang, 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
1548461 CIFC31 H32 B F10 PP 1 21/n 117.6792; 8.532; 19.5972
90; 99.052; 90
2919.2Wang, 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
1548462 CIFC40 H34 B F10 PP 1 21/n 113.2212; 16.1944; 19.5088
90; 94.223; 90
4165.7Wang, 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
1548463 CIFC34 H38 B F10 PP -113.2091; 14.4202; 17.4143
102.465; 96.491; 91.561
3213.5Wang, 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
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
1548544 CIFC24 H31 Al N2P -17.0719; 11.897; 15.148
76.92; 86.12; 85.2
1235.5Yu, Chao; Zhang, Pengfei; Gao, Fei; Zhang, Shaowen; Li, Xiaofang
A displacement-type fluorescent probe reveals active species in the coordinative polymerization of olefins
Polymer Chemistry, 2018, 9, 603
1548545 CIFC30 H43 Al N2P 1 21/n 18.6985; 11.354; 28.622
90; 94.73; 90
2817.2Yu, Chao; Zhang, Pengfei; Gao, Fei; Zhang, Shaowen; Li, Xiaofang
A displacement-type fluorescent probe reveals active species in the coordinative polymerization of olefins
Polymer Chemistry, 2018, 9, 603
1548546 CIFC48 H61 N4 Sc SiP 1 21/c 115.263; 11.695; 25.821
90; 106.57; 90
4417.7Yu, Chao; Zhang, Pengfei; Gao, Fei; Zhang, Shaowen; Li, Xiaofang
A displacement-type fluorescent probe reveals active species in the coordinative polymerization of olefins
Polymer Chemistry, 2018, 9, 603
1548547 CIFC26 H35 Al N2P 1 21/c 17.8769; 28.84; 10.921
90; 106.63; 90
2377.2Yu, Chao; Zhang, Pengfei; Gao, Fei; Zhang, Shaowen; Li, Xiaofang
A displacement-type fluorescent probe reveals active species in the coordinative polymerization of olefins
Polymer Chemistry, 2018, 9, 603
1548552 CIFEu F Mn PP 4/n m m :14.02916; 4.02916; 8.9505
90; 90; 90
145.304I.V. Plokhikh; D.O. Charkin; V.Yu. Verchenko; A.N. Kuznetsov; A.A. Tsirlin; S.M. Kazakov; A.V. Shevelkov
Synthesis, crystal structure and physical properties of europium - manganese fluoride pnictides, EuMnPnF (Pn = P, As, Sb)
Journal of Solid State Chemistry, 2018, 258, 682-690
1548553 CIFAs Eu F MnP 4/n m m :14.12265; 4.12265; 9.08462
90; 90; 90
154.404I.V. Plokhikh; D.O. Charkin; V.Yu. Verchenko; A.N. Kuznetsov; A.A. Tsirlin; S.M. Kazakov; A.V. Shevelkov
Synthesis, crystal structure and physical properties of europium - manganese fluoride pnictides, EuMnPnF (Pn = P, As, Sb)
Journal of Solid State Chemistry, 2018, 258, 682-690
1548554 CIFEu F Mn SbP 4/n m m :14.31203; 4.31203; 9.43557
90; 90; 90
175.441I.V. Plokhikh; D.O. Charkin; V.Yu. Verchenko; A.N. Kuznetsov; A.A. Tsirlin; S.M. Kazakov; A.V. Shevelkov
Synthesis, crystal structure and physical properties of europium - manganese fluoride pnictides, EuMnPnF (Pn = P, As, Sb)
Journal of Solid State Chemistry, 2018, 258, 682-690
1548564 CIFC17 H12 OP 1 21/c 120.011; 8.957; 13.2256
90; 92.118; 90
2368.9Xu, Wei; Fu, Yanyan; Liu, Huan; He, Qingguo; Cao, Huimin; Cheng, Jiangong
Attogram "Meth" Detection Enabled by Selective Organic Crystal Disaggregation via Directed Crystal Level Interactions.
Analytical chemistry, 2018, 90, 1402-1407
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

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