Crystallography Open Database

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Searching year of publication is 2022

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1566499 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566500 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566501 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566502 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566503 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566504 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566505 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566506 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566507 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566508 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566509 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566510 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566511 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566512 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566513 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566514 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566515 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566516 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566517 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566518 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566519 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566520 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566521 CIFC64 H86 Cl2 N6 O6P 3120.2894; 20.2894; 13.6577
90; 90; 120
4869.1Ding, Yanjun; Alimi, Lukman O.; Du, Jing; Hua, Bin; Dey, Avishek; Yu, Pei; Khashab, Niveen M.
Pillar[3]trianglamines: deeper cavity triangular macrocycles for selective hexene isomer separation
Chemical Science, 2022
1566522 CIFC69 H96 N6 O6R 3 :H20.366; 20.366; 13.791
90; 90; 120
4953.79Ding, Yanjun; Alimi, Lukman O.; Du, Jing; Hua, Bin; Dey, Avishek; Yu, Pei; Khashab, Niveen M.
Pillar[3]trianglamines: deeper cavity triangular macrocycles for selective hexene isomer separation
Chemical Science, 2022
1566523 CIFC66 H90 N6 O6R 3 :H20.3338; 20.3338; 13.7372
90; 90; 120
4918.88Ding, Yanjun; Alimi, Lukman O.; Du, Jing; Hua, Bin; Dey, Avishek; Yu, Pei; Khashab, Niveen M.
Pillar[3]trianglamines: deeper cavity triangular macrocycles for selective hexene isomer separation
Chemical Science, 2022
1566524 CIFC74 H104 Ga2 N8 Sb2P -110.4552; 11.9732; 14.9227
93.2189; 97.3354; 107.995
1753.06Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566525 CIFC66 H102 Ga2 N4 O2 Sb2 SiC 1 2/c 159.557; 11.8135; 21.011
90; 108.078; 90
14053Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566526 CIFC78 H116 Ga2 N6 Sb2 SiP -110.919; 14.343; 26.014
83.994; 78.718; 88.053
3973Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566527 CIFC64.5 H98 Cl2 Ga2 N4 Sb2 SiP 1 21/c 119.7547; 10.5843; 33.512
90; 96.97; 90
6955.2Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566528 CIFC71.5 H103 Ga2 N7 Sb2P 1 21/c 119.9634; 12.5667; 29.4717
90; 109.028; 90
6989.7Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566529 CIFC65 H103 Ga2 N7 Sb2 SiP 1 21 110.7967; 21.163; 15.164
90; 96.979; 90
3439.2Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566530 CIFC79 H117 Ga2 N7 Sb2P 1 21/n 110.9672; 45.894; 15.2335
90; 94.502; 90
7643.8Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566531 CIFC72.5 H102 F3 Ga2 N7 Sb2P -110.6581; 12.7136; 27.5744
102.129; 92.993; 98.869
3595.5Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566532 CIFC78 H119 F3 Ga2 N7 Sb2P 1 21/n 112.1758; 27.211; 24.248
90; 99.805; 90
7916.4Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566533 CIFC68 H110 Ga2 N8 Sb2 Si2P 1 21/n 111.889; 18.46; 33.366
90; 96.36; 90
7278Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566534 CIFC81 H112 Ga2 N8 Sb2P -111.6222; 17.8727; 19.5796
108.099; 90.076; 93.817
3856.2Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566535 CIFC77 H110 Ga2 N8 Sb2P 1 21/c 113.6969; 28.763; 20.711
90; 94.587; 90
8133.3Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566536 CIFC84 H108 Ga2 N6 Sb4P -112.0886; 12.3645; 14.1831
86.028; 75.849; 74.786
1983.54Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566537 CIFC44 H45 F6 N6 P Ru2P 1 21/n 112.6141; 12.2041; 27.463
90; 98.846; 90
4177.47Bellini, Marco; Bösken, Jonas; Bartoli, Francesco; Miller, Hamish; Thöny, Debora; Poggini, Lorenzo; Wörle, Michael; Oberhauser, Werner; Gamboa-Carballo, Juan José; Lavacchi, Alessandro; Krumeich, Frank; Grützmacher, Hansjörg; Vizza, Francesco
Remarkable Stability of a Molecular Ruthenium Complex in PEM Water Electrolysis
Chemical Science, 2022
1566538 CIFC36 H35 B F4 N2 O Ru2P -19.5469; 10.1082; 17.4002
78.96; 76.819; 85.773
1603.87Bellini, Marco; Bösken, Jonas; Bartoli, Francesco; Miller, Hamish; Thöny, Debora; Poggini, Lorenzo; Wörle, Michael; Oberhauser, Werner; Gamboa-Carballo, Juan José; Lavacchi, Alessandro; Krumeich, Frank; Grützmacher, Hansjörg; Vizza, Francesco
Remarkable Stability of a Molecular Ruthenium Complex in PEM Water Electrolysis
Chemical Science, 2022
1566539 CIFC37 H33 NC 1 2/c 135.402; 9.1778; 17.961
90; 110.844; 90
5453.8Duan, Shengzu; Zi, Yujin; Wang, Lingling; Cong, Jielun; Chen, Wen; Li, Minyan; Zhang, Hongbin; Yang, Xiaodong; Walsh, Patrick
α-Branched Amines through Radical Coupling with 2-Azaallyl Anions, Redox Active Esters and Alkenes
Chemical Science, 2022
1566540 CIFC21 H15 Cl F3 N3 O2P 1 21/n 115.287; 15.859; 17.629
90; 114.523; 90
3888Yang, Hefei; Wang, Le-Cheng; Zhang, Yu; Zheng, Dongling; Chen, Zhengkai; Wu, Xiao-Feng
Controllable access to trifluoromethyl-containing indoles and indolines: Palladium-catalyzed regioselective functionalization of unactivated alkenes with trifluoroacetimidoyl chlorides
Chemical Science, 2022
1566541 CIFC22 H15 F3 N3 OP 1 21/c 115.6657; 33.014; 7.2436
90; 98.651; 90
3703.7Yang, Hefei; Wang, Le-Cheng; Zhang, Yu; Zheng, Dongling; Chen, Zhengkai; Wu, Xiao-Feng
Controllable access to trifluoromethyl-containing indoles and indolines: Palladium-catalyzed regioselective functionalization of unactivated alkenes with trifluoroacetimidoyl chlorides
Chemical Science, 2022
1566542 CIFC492 H528 N48 O60P 3 c 132.5182; 32.5182; 51.424
90; 90; 120
47092Xu, Ning; Su, Kongzhao; M. El-Sayed, El-Sayed; Ju, Zhanfeng; Yuan, Daqiang
Chiral Proline-Substituted Porous Organic Cages in Asymmetric Organocatalysis
Chemical Science, 2022
1566543 CIFC280 H320 N32 O40P 128.4101; 30.2731; 32.7364
82.444; 81.795; 63.273
24818Xu, Ning; Su, Kongzhao; M. El-Sayed, El-Sayed; Ju, Zhanfeng; Yuan, Daqiang
Chiral Proline-Substituted Porous Organic Cages in Asymmetric Organocatalysis
Chemical Science, 2022
1566544 CIFC28 H28 Br Cl Cu N6 O2P 1 21/c 116.1127; 8.9758; 19.2463
90; 103.825; 90
2702.85Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566545 CIFC28 H28 Cl Cu N6 O1.5P 1 21/c 115.0147; 34.2629; 10.2999
90; 107.565; 90
5051.7Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566546 CIFC32 H39 Cl3 Cu N8 O3P 17.2313; 9.2604; 14.1201
78.16; 77.214; 70.423
859.9Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566547 CIFC60 H63 Br2 Cl N14 Ni O4P -19.7632; 15.6735; 19.622
87.172; 75.925; 85.319
2901.4Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566548 CIFC33 H39 Cl Cu N8 O3C 1 2/c 137.667; 10.5159; 19.22
90; 118.948; 90
6661.9Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566549 CIFC26 H23 Br N6 OP -112.22; 12.7328; 16.424
76.485; 82.598; 67.698
2296.6Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566550 CIFC12 H16 N2 O2P -17.7366; 7.9072; 10.7395
99.872; 102.594; 113.64
562.21Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566551 CIFC17 H29 N OP 1 21 17.18; 4.628; 48.944
90; 92.55; 90
1624.8Wu, Zhen-Long; Zhang, Wei-Yan; Zhong, Jin-Cheng; Huang, Xiao-Jun; Xu, Wei; Chen, Min-Feng; Weng, Shao-Quan; Zhang, Dong-Mei; Che, Chun-Tao; Ye, Wen-Cai; Wang, Ying
Angiogenesis-Inhibitory Piperidine Alkaloids from the Leaves of <i>Microcos paniculata</i>.
Journal of natural products, 2022, 85, 375-383
1566552 CIFC17 H31 N O3P 1 21 112.37896; 5.01515; 13.9105
90; 99.1891; 90
852.51Wu, Zhen-Long; Zhang, Wei-Yan; Zhong, Jin-Cheng; Huang, Xiao-Jun; Xu, Wei; Chen, Min-Feng; Weng, Shao-Quan; Zhang, Dong-Mei; Che, Chun-Tao; Ye, Wen-Cai; Wang, Ying
Angiogenesis-Inhibitory Piperidine Alkaloids from the Leaves of <i>Microcos paniculata</i>.
Journal of natural products, 2022, 85, 375-383
1566553 CIFC16 H27 N OP 21 21 215.1556; 9.493; 31.8376
90; 90; 90
1558.2Wu, Zhen-Long; Zhang, Wei-Yan; Zhong, Jin-Cheng; Huang, Xiao-Jun; Xu, Wei; Chen, Min-Feng; Weng, Shao-Quan; Zhang, Dong-Mei; Che, Chun-Tao; Ye, Wen-Cai; Wang, Ying
Angiogenesis-Inhibitory Piperidine Alkaloids from the Leaves of <i>Microcos paniculata</i>.
Journal of natural products, 2022, 85, 375-383
1566554 CIFC16 H25 N OP 21 21 215.0809; 9.5095; 31.1268
90; 90; 90
1503.95Wu, Zhen-Long; Zhang, Wei-Yan; Zhong, Jin-Cheng; Huang, Xiao-Jun; Xu, Wei; Chen, Min-Feng; Weng, Shao-Quan; Zhang, Dong-Mei; Che, Chun-Tao; Ye, Wen-Cai; Wang, Ying
Angiogenesis-Inhibitory Piperidine Alkaloids from the Leaves of <i>Microcos paniculata</i>.
Journal of natural products, 2022, 85, 375-383
1566555 CIFC21 H22 O8 SP 1 21/c 19.3577; 25.184; 9.0558
90; 96.873; 90
2118.8Xu, Yanchao; Liu, Wen; Wu, Dan; He, Wenwen; Zuo, Mingxing; Wang, Dongyang; Fu, Peng; Wang, Liping; Zhu, Weiming
Sulfur-Containing Phenolic Compounds from the Cave Soil-Derived <i>Aspergillus fumigatus</i> GZWMJZ-152.
Journal of natural products, 2022, 85, 433-440
1566556 CIFC9 H9 N O3 SP 21 21 218.2204; 8.5993; 13.4964
90; 90; 90
954.06Xu, Yanchao; Liu, Wen; Wu, Dan; He, Wenwen; Zuo, Mingxing; Wang, Dongyang; Fu, Peng; Wang, Liping; Zhu, Weiming
Sulfur-Containing Phenolic Compounds from the Cave Soil-Derived <i>Aspergillus fumigatus</i> GZWMJZ-152.
Journal of natural products, 2022, 85, 433-440
1566557 CIFC19 H20 O8 SP -18.1509; 10.0095; 12.0777
106.945; 90.36; 90.567
942.51Xu, Yanchao; Liu, Wen; Wu, Dan; He, Wenwen; Zuo, Mingxing; Wang, Dongyang; Fu, Peng; Wang, Liping; Zhu, Weiming
Sulfur-Containing Phenolic Compounds from the Cave Soil-Derived <i>Aspergillus fumigatus</i> GZWMJZ-152.
Journal of natural products, 2022, 85, 433-440
1566558 CIFC21 H22 O9 SP -18.1167; 9.0623; 15.8947
86.54; 87.286; 65.417
1060.92Xu, Yanchao; Liu, Wen; Wu, Dan; He, Wenwen; Zuo, Mingxing; Wang, Dongyang; Fu, Peng; Wang, Liping; Zhu, Weiming
Sulfur-Containing Phenolic Compounds from the Cave Soil-Derived <i>Aspergillus fumigatus</i> GZWMJZ-152.
Journal of natural products, 2022, 85, 433-440
1566559 CIFBi O2P 1 21/m 111.6212; 3.4067; 7.3247
90; 99.9889; 90
285.589Feng, Xuezhen; Zou, Haiyuan; Zheng, Renji; Wei, Wenfei; Wang, Ranhao; Zou, Wensong; Lim, Gukhyun; Hong, Jihyun; Duan, Lele; Chen, Hong
Bi<sub>2</sub>O<sub>3</sub>/BiO<sub>2</sub> Nanoheterojunction for Highly Efficient Electrocatalytic CO<sub>2</sub> Reduction to Formate.
Nano letters, 2022, 22, 1656-1664
1566560 CIF
HKL
Paper
C6 H13 Cl6 N3 O2 SnP -17.4224; 7.4518; 8.4986
105.726; 97.426; 112.383
403.85Ghallab, Rochdi; Bougueria, Hassiba; Merazig, Hocine
4-Amidinopyridinium hexachloridostannate(IV) dihydrate
IUCrData, 2022, 7, x220195
1566561 CIF
HKL
Paper
C10 H14 Cl10 N4 O2 SnP -17.4624; 8.4715; 10.1324
101.434; 90.043; 107.554
597.34Ghallab, Rochdi; Bougueria, Hassiba; Merazig, Hocine
Bis(2-amino-3,5-dichloropyridinium) hexachloridostannate(IV) dihydrate
IUCrData, 2022, 7, x220191
1566562 CIFC34 H38 Au2 O4 P2 S2P 1 21/n 111.7462; 39.197; 15.6529
90; 107.882; 90
6858.7Duminy, Welni; Pillay, Michael N.; van Zyl, Werner E.
Silver(I) and Gold(I) Monothiocarbonate Complexes: Synthesis, Structure, Luminescence
Inorganics, 2022, 10, 19
1566563 CIFC17 H22 O10P 21 21 217.776; 8.6993; 26.8196
90; 90; 90
1814.23Chen, Jianwei; Chen, Jun; Wang, Siqi; Bao, Xiaoze; Li, Songwei; Wei, Bin; Zhang, Huawei; Wang, Hong
Amycolachromones A–F, Isolated from a Streptomycin-Resistant Strain of the Deep-Sea Marine Actinomycete Amycolatopsis sp. WP1
Marine Drugs, 2022, 20, 162
1566564 CIFC1.21 H1.21 O0.6P 21 21 217.776; 8.6993; 26.8196
90; 90; 90
1814.23Chen, Jianwei; Chen, Jun; Wang, Siqi; Bao, Xiaoze; Li, Songwei; Wei, Bin; Zhang, Huawei; Wang, Hong
Amycolachromones A–F, Isolated from a Streptomycin-Resistant Strain of the Deep-Sea Marine Actinomycete Amycolatopsis sp. WP1
Marine Drugs, 2022, 20, 162
1566565 CIFC13.25 H13.25 O13.25P 21 21 217.776; 8.6993; 26.8196
90; 90; 90
1814.23Chen, Jianwei; Chen, Jun; Wang, Siqi; Bao, Xiaoze; Li, Songwei; Wei, Bin; Zhang, Huawei; Wang, Hong
Amycolachromones A–F, Isolated from a Streptomycin-Resistant Strain of the Deep-Sea Marine Actinomycete Amycolatopsis sp. WP1
Marine Drugs, 2022, 20, 162
1566566 CIFC17 H22 O10P 21 21 217.776; 8.6993; 26.8196
90; 90; 90
1814.23Chen, Jianwei; Chen, Jun; Wang, Siqi; Bao, Xiaoze; Li, Songwei; Wei, Bin; Zhang, Huawei; Wang, Hong
Amycolachromones A–F, Isolated from a Streptomycin-Resistant Strain of the Deep-Sea Marine Actinomycete Amycolatopsis sp. WP1
Marine Drugs, 2022, 20, 162
1566567 CIFC36 H31 N5 OP -17.8563; 9.2517; 21.803
95.923; 98.136; 96.538
1547.1Guillon, Jean; Savrimoutou, Solène; Albenque-Rubio, Sandra; Pinaud, Noël; Moreau, Stéphane; Desplat, Vanessa
Synthesis, Crystal Structure and Anti-Leukemic Activity of 1,3-Dihydro-1-{1-[4-(4-phenylpyrrolo[1,2-a]quinoxalin-3-yl)benzyl]piperidin-4-yl}-2H-benzimidazol-2-one
Molbank, 2022, 2022, M1333
1566568 CIFC80 H110 Cu4 O2 P6P 1 21/n 117.127; 19.946; 23.841
90; 105.715; 90
7840Dannenberg, Steven G.; Waterman, Rory
Cyclo-Tetrakis(μ-diphenylphosphido)-1,5-bis(tri-tert-butylphosphine)-Tetracopper
Molbank, 2022, 2022, M1334
1566569 CIFC28 H37 Cl4 I N2 SP 1 21/n 110.5912; 18.7089; 16.071
90; 102.093; 90
3113.8Saab, Marina; Nahra, Fady; Van Hecke, Kristof
Charge-Transfer Adducts of Chalcogenourea Derivatives of N-Heterocyclic Carbenes with Iodine Monochloride
Molbank, 2022, 2022, M1344
1566570 CIFC30 H42 Cl3 I N2 SeP 1 21/n 19.741; 16.9218; 19.8068
90; 97.399; 90
3237.67Saab, Marina; Nahra, Fady; Van Hecke, Kristof
Charge-Transfer Adducts of Chalcogenourea Derivatives of N-Heterocyclic Carbenes with Iodine Monochloride
Molbank, 2022, 2022, M1344
1566571 CIFC20 H24 N6 O4P -19.6243; 9.859; 12.5952
68.645; 72.467; 75.23
1047.06Lopes, Susana M. M.; Lemos, Américo; Paixão, José A.; Pinho e Melo, Teresa M. V. D.
Ethyl 7-Acetyl-8a-methyl-3-(1-phenyl-1H-tetrazol-5-yl)-1,4,4a,5,6,8a-hexahydro-7H-pyrano[2,3-c]pyridazine-1-carboxylate
Molbank, 2022, 2022, M1338
1566572 CIFC26 H31 N O12P 1 21 110.1989; 8.7455; 15.8721
90; 99.068; 90
1398.01Fitzgerald, Liam S.; O’Malley, Ciaran; Murphy, Paul V.
(1R,2R,3S,4R)-1-(Acetylamino)-2,4,5-tris(acetyloxy)-1-((2S)-4-(benzyloxy)-5-oxo-2,5-dihydrofuran-2-yl)pentan-3-yl Acetate
Molbank, 2022, 2022, M1337
1566573 CIFC13 H13 Cl N2P 1 21/c 19.4547; 16.2237; 7.9004
90; 104.169; 90
1174.98Adeleke, Adesola A.; Omondi, Bernard
Crystal Structure of a Chiral Sec-Amine, 4-Chloro-N-(1-(pyridin-2-yl)ethyl)aniline
Molbank, 2022, 2022, M1335
1566574 CIFC11 H10 N4 O3C 1 c 123.794; 5.347; 8.9367
90; 96.216; 90
1130.3Pokhodylo, Nazariy T.; Slyvka, Yuriy I.; Goreshnik, Evgeny A.; Obushak, Mykola D.
Ethyl 5-Formyl-1-(pyridin-3-yl)-1H-1,2,3-triazole-4-carboxylate: Synthesis, Crystal Structure, Hirshfeld Surface Analysis, and DFT Calculation
Molbank, 2022, 2022, M1340
1566575 CIFC14 H16 Co N2 O12P 1 21/n 16.9863; 23.7443; 10.6564
90; 100.456; 90
1738.38Xia, Zhengyao; Li, Yan; Ji, Cheng; Jiang, Yucheng; Ma, Chunlan; Gao, Ju; Zhang, Jinlei
Slow-Relaxation Behavior of a Mononuclear Co(II) Complex Featuring Long Axial Co-O Bond.
Nanomaterials (Basel, Switzerland), 2022, 12, 707
1566576 CIFC70 H81 B N2 O4P 1 21/c 125.398; 21.296; 11.522
90; 96.49; 90
6192Han, Jianmei; Huang, Zhongyan; Miao, Jingsheng; Qiu, Yuntao; Xie, Ziyang; Yang, Chuluo
Narrowband blue emission with insensitivity to the doping concentration from an oxygen-bridged triarylboron-based TADF emitter: nondoped OLEDs with a high external quantum efficiency up to 21.4%
Chemical Science, 2022
1566577 CIFC20 H46 Cl N2 P2 ReP 1 21/n 18.5852; 23.581; 12.2292
90; 92.515; 90
2473.39Connor, Gannon P.; Delony, Daniel; Weber, Jeremy E.; Mercado, Brandon Q.; Curley, Julia B.; Schneider, Sven; Mayer, James M.; Holland, Patrick L.
Facile conversion of ammonia to a nitride in a rhenium system that cleaves dinitrogen
Chemical Science, 2022
1566578 CIFC54 H67 B Cl F24 N3 O0.5 P2 ReP -112.2681; 15.3208; 17.9247
92.777; 109.357; 97.022
3140.5Connor, Gannon P.; Delony, Daniel; Weber, Jeremy E.; Mercado, Brandon Q.; Curley, Julia B.; Schneider, Sven; Mayer, James M.; Holland, Patrick L.
Facile conversion of ammonia to a nitride in a rhenium system that cleaves dinitrogen
Chemical Science, 2022
1566579 CIFC14 H22 OP 4110.0087; 10.0087; 12.7456
90; 90; 90
1276.78Pan, Aaron; Chojnacka, Maja; Crowley, Robert; Göttemann, Lucas; Haines, Brandon E.; Kou, Kevin G. M.
Synergistic Brønsted/Lewis acid catalyzed aromatic alkylation with unactivated tertiary alcohols or di-tert-butylperoxide to synthesize quaternary carbon centers
Chemical Science, 2022
1566580 CIFC261 H476 Ag55 Cu3 F3 Mo8 O38 S43P -123.3674; 23.7497; 38.3998
73.33; 75.236; 73.633
19233.6Gao, Jin-Ping; Qi, Zhikai; Zhang, Fu-Qiang; Zhang, Xian-Ming
In situ insertion of copper to form heteroanionic D3h-symmetric [Cu3Mo8O32]10− for a templated Ag55 nanocluster
Nanoscale, 2022
1566581 CIF
Paper
C68.39 H67.65 Cl6 N12 O4 Zn3C 1 2/c 133.3132; 14.4948; 31.7714
90; 102.245; 90
14992.4Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566582 CIFC68.62 H68.92 Cl6 N12 O4 Zn3C 1 2/c 133.306; 14.488; 31.8026
90; 102.247; 90
14996.7Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566583 CIFC54.5 H43 I6 N12 O4 Zn3C 1 2/c 134.4866; 14.9746; 31.0009
90; 101.933; 90
15663.6Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566584 CIFC55 H42 I6 N12 O4 Zn3C 1 2/c 134.4862; 15.0052; 31.125
90; 101.958; 90
15756.8Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566585 CIFC63 H78 I6 N12 Zn3C 1 2/c 134.5713; 15.1587; 29.5198
90; 100.649; 90
15203.6Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566586 CIFC64.69 H81.39 I6 N12 Zn3C 1 2/c 134.595; 15.1725; 29.535
90; 100.647; 90
15235.8Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566587 CIFC25 H21 F3 N2 O3 SP 1 21/c 115.2479; 19.58181; 16.7407
90; 116.095; 90
4488.95Dai, Yating; Liang, Shuangshuang; Zeng, Guangkuo; Huang, Hongchun; Zhao, Xiaowei; Cao, Shanshan; Jiang, Zhiyong
Asymmetric [3 + 2] photocycloadditions of cyclopropylamines with electron-rich and electron-neutral olefins
Chemical Science, 2022
1566588 CIFC36 H32 F3 N O5 SC 1 2 129.3277; 7.49483; 18.2663
90; 124.382; 90
3313.6Dai, Yating; Liang, Shuangshuang; Zeng, Guangkuo; Huang, Hongchun; Zhao, Xiaowei; Cao, Shanshan; Jiang, Zhiyong
Asymmetric [3 + 2] photocycloadditions of cyclopropylamines with electron-rich and electron-neutral olefins
Chemical Science, 2022
1566589 CIFC33 H34 Cl N O2P 1 21 111.1324; 7.5493; 16.7445
90; 90.526; 90
1407.18Dai, Yating; Liang, Shuangshuang; Zeng, Guangkuo; Huang, Hongchun; Zhao, Xiaowei; Cao, Shanshan; Jiang, Zhiyong
Asymmetric [3 + 2] photocycloadditions of cyclopropylamines with electron-rich and electron-neutral olefins
Chemical Science, 2022
1566590 CIFC30 H29 Cl N2 O3P 21 21 2112.3663; 16.7129; 25.3786
90; 90; 90
5245.17Dai, Yating; Liang, Shuangshuang; Zeng, Guangkuo; Huang, Hongchun; Zhao, Xiaowei; Cao, Shanshan; Jiang, Zhiyong
Asymmetric [3 + 2] photocycloadditions of cyclopropylamines with electron-rich and electron-neutral olefins
Chemical Science, 2022
1566591 CIFC25 H25 O2 PP 21 21 215.89107; 16.00327; 22.3169
90; 90; 90
2103.96Zhang, Ya-Qian; Zhang, Qingwei; Han, Xue-Yu; Wu, Yue; Qi, Peng-Jia; Zhang, Qing
Ni-Catalyzed Asymmetric Hydrophosphinylation of Conjugated Enynes and Mechanistic Studies
Chemical Science, 2022
1566592 CIFC23 H22 O3 SP 17.2748; 12.2905; 12.5063
63.599; 79.446; 75.302
965.6Li, Yanjun; Liou, Yan-Cheng; Chen, Xinran; Ackermann, Lutz
Thioether-enabled palladium-catalyzed atroposelective C–H olefination for N−C and C−C axial chirality
Chemical Science, 2022
1566593 CIFC20 H20 N2 O SP 1 21 111.0831; 6.8389; 12.0729
90; 109.142; 90
864.48Li, Yanjun; Liou, Yan-Cheng; Chen, Xinran; Ackermann, Lutz
Thioether-enabled palladium-catalyzed atroposelective C–H olefination for N−C and C−C axial chirality
Chemical Science, 2022
1566594 CIF
HKL
Paper
C15 H26 I N3 O6P 1 21 110.816; 7.0106; 13.169
90; 106.833; 90
955.8Lambrecht, Sina; Villinger, Alexander; Jopp, Stefan
1-(Methyl-α-<small>D</small>-glucopyranosid-6-yl)-3-vinylimidazolium iodide dimethylformamide monosolvate
IUCrData, 2022, 7, x220265
1566595 CIF
HKL
Paper
C77 H83 Cl4 K Mn N6 O8 SP b c a19.5585; 24.7224; 29.8538
90; 90; 90
14435.3Yuan, Yiwen; Li, Jianfeng
([2.2.2]Cryptand)potassium (4-methylbenzenethiolato)[5,10,15,20-tetrakis(4-chlorophenyl)porphyrinato]manganate(II) tetrahydrofuran disolvate
IUCrData, 2022, 7, x220241
1566596 CIF
HKL
Paper
C17 H15 B F4 N2P 1 21/n 111.426; 9.0735; 15.5434
90; 102.118; 90
1575.54Welton, Claire E.; Nesterov, Vladimir N.; Smucker, Bradley W.
1-(2-Methylphenyl)-4,4'-bipyridin-1-ium tetrafluoridoborate
IUCrData, 2022, 7, x220248
1566597 CIFC28 H24 O6 S2P 21 21 219.2608; 14.3014; 18.9339
90; 90; 90
2507.65Hu, Linfeng; Li, Jinzhao; Zhang, Yongyan; Feng, Xiaoming; Liu, Xiaohua
Enantioselective [1,2]-Stevens Rearrangement of Thiosulfonates to Construct Dithio-Substituted Quaternary Carbon Centers
Chemical Science, 2022
1566598 CIFC33 H43 Cl2 Cr N2 O2P -116.326; 16.389; 16.464
70.953; 89.935; 71.859
3932.2Tian, Jiliang; Zhang, Xingwang; Liu, Shaofeng; Li, Zhibo
Chromium complexes supported by NNO-tridentate ligands: an unprecedented activity with the requirement of a small amount of MAO
Polymer Chemistry, 2022, 13, 1852-1860

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