Crystallography Open Database

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Searching journal of publication like 'CrystEngComm' volume of publication is 24

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7244072 CIFC24 H30 N8 O5 S4P 1 21/n 116.533; 9.996; 19.81
90; 112.26; 90
3029.9Hughes, David S.; Bingham, Ann L.; Hursthouse, Michael B.; Threlfall, Terry L.; Bond, Andrew D.
The extensive solid-form landscape of sulfathiazole: geometrical similarity and interaction energies
CrystEngComm, 2022, 24, 609-619
7244073 CIFC14 H18 N4 O2 S2P 1 21/n 18.4758; 20.7179; 9.6108
90; 97.84; 90
1671.89Hughes, David S.; Bingham, Ann L.; Hursthouse, Michael B.; Threlfall, Terry L.; Bond, Andrew D.
The extensive solid-form landscape of sulfathiazole: geometrical similarity and interaction energies
CrystEngComm, 2022, 24, 609-619
7244074 CIFC14 H15 N3 O4 S2P 1 21/n 18.194; 21.111; 9.57
90; 94.2; 90
1651Hughes, David S.; Bingham, Ann L.; Hursthouse, Michael B.; Threlfall, Terry L.; Bond, Andrew D.
The extensive solid-form landscape of sulfathiazole: geometrical similarity and interaction energies
CrystEngComm, 2022, 24, 609-619
7244075 CIFC14 H17 N3 O4 S2P 1 21/n 18.417; 20.975; 9.472
90; 93.83; 90
1668.5Hughes, David S.; Bingham, Ann L.; Hursthouse, Michael B.; Threlfall, Terry L.; Bond, Andrew D.
The extensive solid-form landscape of sulfathiazole: geometrical similarity and interaction energies
CrystEngComm, 2022, 24, 609-619
7244076 CIFC30 H38 N8 O4 S4P 1 21/n 18.6785; 19.911; 10.0217
90; 97.776; 90
1715.8Hughes, David S.; Bingham, Ann L.; Hursthouse, Michael B.; Threlfall, Terry L.; Bond, Andrew D.
The extensive solid-form landscape of sulfathiazole: geometrical similarity and interaction energies
CrystEngComm, 2022, 24, 609-619
7244077 CIFC27 H37 N7 O5 S4C 1 c 116.616; 16.088; 12.63
90; 110.69; 90
3158.5Hughes, David S.; Bingham, Ann L.; Hursthouse, Michael B.; Threlfall, Terry L.; Bond, Andrew D.
The extensive solid-form landscape of sulfathiazole: geometrical similarity and interaction energies
CrystEngComm, 2022, 24, 609-619
7244078 CIFB9 Cd3 H3 K Na5 O38 P6P 63/m12.071; 12.071; 12.118
90; 90; 120
1529.1Feng, Yuquan; Lv, Linxia; Bi, Dongqin; Zhong, Zhiguo; Li, Jing; Yue, Zilong; Zeng, Zhaoge; Zhang, Shuhan; Meng, Zhaohui
Efficient degradation of reactive brilliant red on the first open-framework borate-rich cadmium borophosphate
CrystEngComm, 2022, 24, 479-483
7244085 CIFC18 H14 O2 S2C 1 2/c 113.921; 16.888; 7.6224
90; 120; 90
1551.9Zhang, Xiunan; Wang, Jingkang; Yu, Fei; Cheng, Xiaowei; Hao, Yunhui; Liu, Yue; Huang, Xin; Wang, Ting; Hao, Hongxun
Influence of additives on the polymorphic manipulation of organic fluorescent crystals and its mechanism
CrystEngComm, 2022, 24, 854-862
7244095 CIFC102 H118 Co8 N2 O44 S8P -112.638; 13.524; 21.208
84.09; 84.24; 64.85
3257.3Kniazeva, Mariia V.; Ovsyannikov, Alexander S.; Samigullina, Aida I.; Islamov, Daut R.; Gubaidullin, Aidar T.; Dorovatovskii, Pavel V.; Lazarenko, Vladimir A.; Solovieva, Svetlana E.; Antipin, Igor S.; Ferlay, Sylvie
Impact of flexible succinate connectors on the formation of tetrasulfonylcalix[4]arene based nano-sized polynuclear cages: structural diversity and induced chirality study
CrystEngComm, 2022, 24, 628-638
7244096 CIFC130 H194 N14 O48 S8 Zn6P b c n31.887; 23.216; 23.261
90; 90; 90
17220Kniazeva, Mariia V.; Ovsyannikov, Alexander S.; Samigullina, Aida I.; Islamov, Daut R.; Gubaidullin, Aidar T.; Dorovatovskii, Pavel V.; Lazarenko, Vladimir A.; Solovieva, Svetlana E.; Antipin, Igor S.; Ferlay, Sylvie
Impact of flexible succinate connectors on the formation of tetrasulfonylcalix[4]arene based nano-sized polynuclear cages: structural diversity and induced chirality study
CrystEngComm, 2022, 24, 628-638
7244097 CIFC108 H138 N4 Ni9 O50 S8P 42 21 222.981; 22.981; 13.534
90; 90; 90
7148Kniazeva, Mariia V.; Ovsyannikov, Alexander S.; Samigullina, Aida I.; Islamov, Daut R.; Gubaidullin, Aidar T.; Dorovatovskii, Pavel V.; Lazarenko, Vladimir A.; Solovieva, Svetlana E.; Antipin, Igor S.; Ferlay, Sylvie
Impact of flexible succinate connectors on the formation of tetrasulfonylcalix[4]arene based nano-sized polynuclear cages: structural diversity and induced chirality study
CrystEngComm, 2022, 24, 628-638
7244098 CIFC120 H162 Co9 N8 O54 S8P 42 21 222.99439; 22.99439; 13.59342
90; 90; 90
7187.41Kniazeva, Mariia V.; Ovsyannikov, Alexander S.; Samigullina, Aida I.; Islamov, Daut R.; Gubaidullin, Aidar T.; Dorovatovskii, Pavel V.; Lazarenko, Vladimir A.; Solovieva, Svetlana E.; Antipin, Igor S.; Ferlay, Sylvie
Impact of flexible succinate connectors on the formation of tetrasulfonylcalix[4]arene based nano-sized polynuclear cages: structural diversity and induced chirality study
CrystEngComm, 2022, 24, 628-638
7244099 CIFC45 H49 Eu3 N12 O24 S4C 2 2 2114.717; 14.3696; 23.7326
90; 90; 90
5018.9He, Qi-Qi; Yao, Shu-Li; Zheng, Teng-Fei; Xu, Hui; Liu, Sui-Jun; Chen, Jing-Lin; Li, Na; Wen, He-Rui
A multi-responsive luminescent sensor based on a stable Eu(iii) metal–organic framework for sensing Fe3+, MnO4−, and Cr2O72− in aqueous solutions
CrystEngComm, 2022, 24, 1041-1048
7244112 CIFC82 H96 Cl4 Co N10 O24 Zr6P -111.3034; 12.7188; 21.9772
82.236; 76.045; 75.545
2959.8Zhu, Juan; Liu, Zhao-Yang; Li, Shuang-bao; Huang, He; Jiang, Bao-Xu; Zhang, Yu-Teng
Stepwise synthesis of Zr-based metal–organic frameworks: incorporating a trinuclear zirconocene-based metallo-pyridine ligand
CrystEngComm, 2022, 24, 475-478
7244113 CIFC82 H98 Cl4 N10 Ni O24 Zr6P -111.3213; 12.545; 21.9866
82.573; 76.173; 75.347
2925.7Zhu, Juan; Liu, Zhao-Yang; Li, Shuang-bao; Huang, He; Jiang, Bao-Xu; Zhang, Yu-Teng
Stepwise synthesis of Zr-based metal–organic frameworks: incorporating a trinuclear zirconocene-based metallo-pyridine ligand
CrystEngComm, 2022, 24, 475-478
7244114 CIFC17 H23 O7P 21 21 210.5089; 24.083; 6.4952
90; 90; 90
1643.84Makadia, Jay; Madu, Shadrack J.; Arroo, Randolph; Seaton, Colin C.; Li, Mingzhong
Artemisinin–acetylenedicarboxylic acid cocrystal: screening, structure determination, and physicochemical property characterisation
CrystEngComm, 2022, 24, 1056-1067
7244117 CIFC22 H20 Cd N4 O5P n n a24.4715; 8.9399; 9.9133
90; 90; 90
2168.76Bai, Ye; Zhang, Mei-li; Wang, Bo-Tao; Ren, Yi-Xia; Zhao, Yu-Chao; Yang, Hua; Yang, Xiaogang
Four MOFs with isomeric ligands as fluorescent probes for highly selective, sensitive and stable detection of antibiotics in water
CrystEngComm, 2022, 24, 169-181
7244118 CIFC22 H20 Cd N4 O5P -18.7652; 10.148; 12.958
73.895; 77.424; 75.347
1057.8Bai, Ye; Zhang, Mei-li; Wang, Bo-Tao; Ren, Yi-Xia; Zhao, Yu-Chao; Yang, Hua; Yang, Xiaogang
Four MOFs with isomeric ligands as fluorescent probes for highly selective, sensitive and stable detection of antibiotics in water
CrystEngComm, 2022, 24, 169-181
7244119 CIFC22 H18 Cd N4 O4P -19.907; 10.86; 11.41
114.119; 107.767; 97.924
1017.1Bai, Ye; Zhang, Mei-li; Wang, Bo-Tao; Ren, Yi-Xia; Zhao, Yu-Chao; Yang, Hua; Yang, Xiaogang
Four MOFs with isomeric ligands as fluorescent probes for highly selective, sensitive and stable detection of antibiotics in water
CrystEngComm, 2022, 24, 169-181
7244120 CIFC44 H40 N8 O10 Zn2P 1 21/n 17.9711; 38.293; 13.9006
90; 96.469; 90
4216Bai, Ye; Zhang, Mei-li; Wang, Bo-Tao; Ren, Yi-Xia; Zhao, Yu-Chao; Yang, Hua; Yang, Xiaogang
Four MOFs with isomeric ligands as fluorescent probes for highly selective, sensitive and stable detection of antibiotics in water
CrystEngComm, 2022, 24, 169-181
7244123 CIFC24 H12 Cu2 Mo12 N12 O44 PP -111.26; 11.656; 12.787
79.302; 84.606; 68.048
1529Li, Meng-Ting; Sun, Jing-Wen; Yi-Fei-Liu,; Niu, Mei-Hui; Zou, Han-Yu; Sun, Da-Qiang; Yu, Yang
POM-based metal organic frameworks with a woven fabric structure for lithium storage
CrystEngComm, 2022, 24, 1279-1284
7244124 CIFC58 H102 Cd2 Cl8 N34 O34P 1 21/c 114.1506; 14.5033; 22.5841
90; 90.46; 90
4634.8Zhang, Zeng-Hui; Lin, Rui-Lian; Yu, Xiang-Yun; Chen, Li-Xia; Tao, Zhu; Xiao, Xin; Wei, Gang; Redshaw, Carl; Liu, Jing-Xin
Encapsulation of l-valine, d-leucine and d-methionine by cucurbit[8]uril
CrystEngComm, 2022, 24, 1035-1040
7244125 CIFC60 H105 Cd2 Cl8 N34 O34P 1 21/c 114.075; 14.636; 22.677
90; 90.564; 90
4671Zhang, Zeng-Hui; Lin, Rui-Lian; Yu, Xiang-Yun; Chen, Li-Xia; Tao, Zhu; Xiao, Xin; Wei, Gang; Redshaw, Carl; Liu, Jing-Xin
Encapsulation of l-valine, d-leucine and d-methionine by cucurbit[8]uril
CrystEngComm, 2022, 24, 1035-1040
7244126 CIFC53 H81 Cd Cl4 N33 O28 SP -117.535; 17.696; 18.62
69.886; 78.459; 66.732
4970Zhang, Zeng-Hui; Lin, Rui-Lian; Yu, Xiang-Yun; Chen, Li-Xia; Tao, Zhu; Xiao, Xin; Wei, Gang; Redshaw, Carl; Liu, Jing-Xin
Encapsulation of l-valine, d-leucine and d-methionine by cucurbit[8]uril
CrystEngComm, 2022, 24, 1035-1040
7244127 CIFC24 H40 Cu2 Mo12 N12 O50.5 PP -110.9002; 11.5504; 14.7377
89.771; 86.393; 81.188
1829.94Cui, Zi-Wei; Lu, Jun-Jun; Lin, Hong-Yan; Luan, Jian; Chang, Zhi-Han; Li, Xiao-Hui; Wang, Xiu-Li
Four Keggin-type polyoxometalate-based complexes derived from bis(pyrazine)–bis(amide) ligands for electrochemical sensing of multiple analytes and adsorbing dye molecules
CrystEngComm, 2022, 24, 828-836
7244128 CIFC24 H30 Cu2 Mo12 N12 O47 SiP 1 21/c 116.046; 20.6074; 18.8644
90; 96.972; 90
6191.7Cui, Zi-Wei; Lu, Jun-Jun; Lin, Hong-Yan; Luan, Jian; Chang, Zhi-Han; Li, Xiao-Hui; Wang, Xiu-Li
Four Keggin-type polyoxometalate-based complexes derived from bis(pyrazine)–bis(amide) ligands for electrochemical sensing of multiple analytes and adsorbing dye molecules
CrystEngComm, 2022, 24, 828-836
7244129 CIFC28 H41 Co2 N12 O49.5 Si W12C 1 2/m 115.8588; 21.3036; 10.4152
90; 98.134; 90
3483.4Cui, Zi-Wei; Lu, Jun-Jun; Lin, Hong-Yan; Luan, Jian; Chang, Zhi-Han; Li, Xiao-Hui; Wang, Xiu-Li
Four Keggin-type polyoxometalate-based complexes derived from bis(pyrazine)–bis(amide) ligands for electrochemical sensing of multiple analytes and adsorbing dye molecules
CrystEngComm, 2022, 24, 828-836
7244130 CIFC28 H48 Cu2 N12 O52 Si W12P 1 21/n 110.1453; 17.138; 19.2588
90; 96.218; 90
3328.8Cui, Zi-Wei; Lu, Jun-Jun; Lin, Hong-Yan; Luan, Jian; Chang, Zhi-Han; Li, Xiao-Hui; Wang, Xiu-Li
Four Keggin-type polyoxometalate-based complexes derived from bis(pyrazine)–bis(amide) ligands for electrochemical sensing of multiple analytes and adsorbing dye molecules
CrystEngComm, 2022, 24, 828-836
7244137 CIFC10 H16 N3 O9 YP 1 21/c 112.47; 10.334; 13.219
90; 111.93; 90
1580.2Park, Jiwon; Koo, Jin Young; Choi, Hee Cheul
The solvent influenced coordination variation of flexible ligands to Y(iii) towards MOF structural diversity
CrystEngComm, 2022, 24, 846-853
7244138 CIFC9 H8 O7 YP -17.19; 7.578; 9.979
71.83; 83.47; 84.8
512.4Park, Jiwon; Koo, Jin Young; Choi, Hee Cheul
The solvent influenced coordination variation of flexible ligands to Y(iii) towards MOF structural diversity
CrystEngComm, 2022, 24, 846-853
7244139 CIFC12 H13 N O7 YP -17.635; 10.112; 11.216
115.76; 105.96; 95.18
727.5Park, Jiwon; Koo, Jin Young; Choi, Hee Cheul
The solvent influenced coordination variation of flexible ligands to Y(iii) towards MOF structural diversity
CrystEngComm, 2022, 24, 846-853
7244140 CIFC15 H24 N2 O10 YP -19.621; 9.918; 11.149
77.87; 80.29; 79.96
1014.5Park, Jiwon; Koo, Jin Young; Choi, Hee Cheul
The solvent influenced coordination variation of flexible ligands to Y(iii) towards MOF structural diversity
CrystEngComm, 2022, 24, 846-853
7244141 CIFC18 H29 N2 O18.5 Y2P -18.52; 10.069; 16.751
81.28; 79.95; 79.63
1381.1Park, Jiwon; Koo, Jin Young; Choi, Hee Cheul
The solvent influenced coordination variation of flexible ligands to Y(iii) towards MOF structural diversity
CrystEngComm, 2022, 24, 846-853
7244142 CIFC34 H58 N6 O26 Y4P -19.573; 14.857; 19.601
99.49; 95.46; 101.53
2670.4Park, Jiwon; Koo, Jin Young; Choi, Hee Cheul
The solvent influenced coordination variation of flexible ligands to Y(iii) towards MOF structural diversity
CrystEngComm, 2022, 24, 846-853
7244143 CIFC20 H20 Cd2 N2 O15I 1 2/a 113.7701; 11.51; 29.1745
90; 90.088; 90
4624Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244144 CIFC20 H12 Cd3 N2 O12P -18.0862; 8.1863; 8.4893
72.651; 81.681; 65.767
488.97Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244145 CIFC20 H30 Cd3 N2 O21P 1 21 19.0126; 18.6624; 9.1644
90; 103.467; 90
1499.04Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244146 CIFC10 H11 N O8 ZnP 1 21 14.8959; 10.063; 11.3009
90; 95.584; 90
554.12Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244147 CIFC10 H11 Co N O8P 1 21 14.8412; 10.1675; 11.332
90; 95.158; 90
555.54Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244148 CIFC10 H9.4 Cu N O7.2P 1 21 14.9056; 9.7392; 11.4649
90; 97.117; 90
543.53Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244149 CIFC10 H17 N O12 Zn2P 1 21/n 17.4213; 19.3205; 10.8081
90; 96.871; 90
1538.57Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244150 CIFC51.25 H105.75 Cd6 N7.75 O55.5P 1 21 114.1081; 14.3068; 23.1617
90; 90.945; 90
4674.36Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244151 CIFC10 H11 Cd N O8P -17.2467; 8.5509; 10.9978
101.892; 95.728; 114.776
592.04Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244152 CIFC20 H28 Cd3 N2 O20P -17.7777; 8.9715; 11.4851
67.353; 75.848; 70.505
690.98Rixson, Daniel; Günay Sezer, Güneş; Alp, Emre; Mahon, Mary F.; Burrows, Andrew D.
Synthesis, structures and properties of metal–organic frameworks prepared using a semi-rigid tricarboxylate linker
CrystEngComm, 2022, 24, 863-876
7244162 CIFC13 H12 N2 O SC 1 2/c 121.701; 6.1737; 20.5621
90; 120.251; 90
2379.68Tan, Sang Loon; Cardoso, Laura N. F.; de Souza, Marcus V. N.; Wardell, Solange M. S. V.; Wardell, James L.; Tiekink, Edward R. T.
Experimental and computational evidence for stabilising parallel, offset π[C(O)N(H)NC]⋯π(phenyl) interactions in acetohydrazide derivatives
CrystEngComm, 2022, 24, 962-974
7244167 CIFC64 H64 Fe2 Mo12 N8 Na2 O71 P8P -111.853; 14.016; 16.932
105.883; 99.311; 92.164
2659.9Bi, Hao-Xue; Yin, Xiao-Yu; Zhang, Xiu-Juan; Ma, Yuan-Yuan; Han, Zhan-Gang
Efficient visible-light-driven reduction of hexavalent chromium catalyzed by conjugated organic species modified hourglass-type phosphomolybdate hybrids
CrystEngComm, 2022, 24, 1002-1009
7244168 CIFC64 H52 Mn2 Mo12 N8 Na4 O70 P8P -111.8092; 14.143; 17.0587
106.843; 100; 91.8117
2675.3Bi, Hao-Xue; Yin, Xiao-Yu; Zhang, Xiu-Juan; Ma, Yuan-Yuan; Han, Zhan-Gang
Efficient visible-light-driven reduction of hexavalent chromium catalyzed by conjugated organic species modified hourglass-type phosphomolybdate hybrids
CrystEngComm, 2022, 24, 1002-1009
7244169 CIFC64 H62 Co2 Mo12 N8 Na2 O70 P8P -111.856; 14.0079; 16.8886
105.922; 99.3799; 92.0586
2651.5Bi, Hao-Xue; Yin, Xiao-Yu; Zhang, Xiu-Juan; Ma, Yuan-Yuan; Han, Zhan-Gang
Efficient visible-light-driven reduction of hexavalent chromium catalyzed by conjugated organic species modified hourglass-type phosphomolybdate hybrids
CrystEngComm, 2022, 24, 1002-1009
7244170 CIFC64 H60 K2 Mo12 N8 Na2 O69 P8 ZnP -112.079; 13.62; 17.023
75.738; 80.286; 89.388
2673.9Bi, Hao-Xue; Yin, Xiao-Yu; Zhang, Xiu-Juan; Ma, Yuan-Yuan; Han, Zhan-Gang
Efficient visible-light-driven reduction of hexavalent chromium catalyzed by conjugated organic species modified hourglass-type phosphomolybdate hybrids
CrystEngComm, 2022, 24, 1002-1009
7244175 CIFC26 H30 F6 N4 O6C 1 2/c 114.4786; 11.6381; 34.8047
90; 90.017; 90
5864.7Vaganova, Tamara A.; Benassi, Enrico; Gatilov, Yurij V.; Chuikov, Igor P.; Pishchur, Denis P.; Malykhin, Evgenij V.
Polyhalogenated aminobenzonitriles vs. their co-crystals with 18-crown-6: amino group position as a tool to control crystal packing and solid-state fluorescence
CrystEngComm, 2022, 24, 987-1001

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