Crystallography Open Database

Result: there are 302 entries in the selection

Switch to the old layout of the page

Download all results as: list of COD numbers | list of CIF URLs | data in CSV format | archive of CIF files (ZIP)

Searching journal of publication like 'CrystEngComm' volume of publication is 22

Blue left arrow Blue left arrow First | Blue left arrow Previous 50 | of 7 | Next 50 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

COD ID Blue up arrow Links Formula Up arrow Space group Up arrow Cell parameters Cell volume Up arrow Bibliography
7235220 CIFC80 H78 O14P -19.18848; 18.3718; 19.6091
98.7879; 92.6442; 97.7172
3234.19Okayasu, Misaki; Kikkawa, Shoko; Hikawa, Hidemasa; Azumaya, Isao
Co-crystals of 9,9′-bianthracene-10,10′-dicarboxylic acid with linear bidentate basic ligand molecules: synthesis, crystal structure, and properties based on the layer structure exfoliated by water
CrystEngComm, 2020, 22, 497-505
7235221 CIFC28 H17 N O2P b c n11.97202; 12.277; 12.64035
90; 90; 90
1857.88Okayasu, Misaki; Kikkawa, Shoko; Hikawa, Hidemasa; Azumaya, Isao
Co-crystals of 9,9′-bianthracene-10,10′-dicarboxylic acid with linear bidentate basic ligand molecules: synthesis, crystal structure, and properties based on the layer structure exfoliated by water
CrystEngComm, 2020, 22, 497-505
7235222 CIFC42 H42 N4 O11C 1 c 110.2344; 33.477; 11.5077
90; 93.536; 90
3935.2Okayasu, Misaki; Kikkawa, Shoko; Hikawa, Hidemasa; Azumaya, Isao
Co-crystals of 9,9′-bianthracene-10,10′-dicarboxylic acid with linear bidentate basic ligand molecules: synthesis, crystal structure, and properties based on the layer structure exfoliated by water
CrystEngComm, 2020, 22, 497-505
7235223 CIFC40 H26 N2 O4P 1 21/c 114.3333; 11.8876; 16.9672
90; 96.463; 90
2872.64Okayasu, Misaki; Kikkawa, Shoko; Hikawa, Hidemasa; Azumaya, Isao
Co-crystals of 9,9′-bianthracene-10,10′-dicarboxylic acid with linear bidentate basic ligand molecules: synthesis, crystal structure, and properties based on the layer structure exfoliated by water
CrystEngComm, 2020, 22, 497-505
7235224 CIFC42 H43 N4 O11P n a 2133.4734; 10.5712; 11.1961
90; 90; 90
3961.8Okayasu, Misaki; Kikkawa, Shoko; Hikawa, Hidemasa; Azumaya, Isao
Co-crystals of 9,9′-bianthracene-10,10′-dicarboxylic acid with linear bidentate basic ligand molecules: synthesis, crystal structure, and properties based on the layer structure exfoliated by water
CrystEngComm, 2020, 22, 497-505
7235225 CIFC44.8 H39.6 N3.6 O8.2P -110.3818; 10.9676; 18.7727
95.299; 98.714; 91.279
2102.39Okayasu, Misaki; Kikkawa, Shoko; Hikawa, Hidemasa; Azumaya, Isao
Co-crystals of 9,9′-bianthracene-10,10′-dicarboxylic acid with linear bidentate basic ligand molecules: synthesis, crystal structure, and properties based on the layer structure exfoliated by water
CrystEngComm, 2020, 22, 497-505
7235226 CIFC42 H26 N2 O4P b c a12.1391; 12.7561; 38.9751
90; 90; 90
6035.2Okayasu, Misaki; Kikkawa, Shoko; Hikawa, Hidemasa; Azumaya, Isao
Co-crystals of 9,9′-bianthracene-10,10′-dicarboxylic acid with linear bidentate basic ligand molecules: synthesis, crystal structure, and properties based on the layer structure exfoliated by water
CrystEngComm, 2020, 22, 497-505
7235227 CIFC27 H24 Cl4 Cu N2 O5R -3 :H30.1293; 30.1293; 8.9281
90; 90; 120
7018.9Liu, Yi; Zhao, Yue; Liu, Zhi-Qiang; Liu, Xiao-Hui; Zhang, Xiu-Du; Sun, Wei-Yin
Coordination polymers with salicylaldehyde ligands: structural diversity, selective sorption and luminescence sensing properties
CrystEngComm, 2020, 22, 304-310
7235228 CIFC24 H16 Co N2 O4P 1 21/n 18.7775; 6.8216; 16.1117
90; 105.151; 90
931.18Liu, Yi; Zhao, Yue; Liu, Zhi-Qiang; Liu, Xiao-Hui; Zhang, Xiu-Du; Sun, Wei-Yin
Coordination polymers with salicylaldehyde ligands: structural diversity, selective sorption and luminescence sensing properties
CrystEngComm, 2020, 22, 304-310
7235229 CIFC26 H22 Cl2 N2 O5 ZnC 1 2/c 115.516; 17.11; 9.6566
90; 95.233; 90
2552.9Liu, Yi; Zhao, Yue; Liu, Zhi-Qiang; Liu, Xiao-Hui; Zhang, Xiu-Du; Sun, Wei-Yin
Coordination polymers with salicylaldehyde ligands: structural diversity, selective sorption and luminescence sensing properties
CrystEngComm, 2020, 22, 304-310
7235230 CIFC12 H9 Cu I N O2P 1 21/c 112.4544; 4.099; 23.844
90; 103.822; 90
1182Liu, Yi; Zhao, Yue; Liu, Zhi-Qiang; Liu, Xiao-Hui; Zhang, Xiu-Du; Sun, Wei-Yin
Coordination polymers with salicylaldehyde ligands: structural diversity, selective sorption and luminescence sensing properties
CrystEngComm, 2020, 22, 304-310
7235231 CIFC27 H26 Cl2 Co N2 O6R -3 :H31.087; 31.087; 8.954
90; 90; 120
7494Liu, Yi; Zhao, Yue; Liu, Zhi-Qiang; Liu, Xiao-Hui; Zhang, Xiu-Du; Sun, Wei-Yin
Coordination polymers with salicylaldehyde ligands: structural diversity, selective sorption and luminescence sensing properties
CrystEngComm, 2020, 22, 304-310
7235232 CIFC29 H12 O10 Zn2P -110.75; 13.933; 14.348
73.692; 74.143; 68.269
1881.1Moreau, Florian; Audebrand, Nathalie; Poriel, Cyril
9,9′-Spirobifluorene based zinc coordination polymers: a study on linker geometry and topology
CrystEngComm, 2020, 22, 293-303
7235233 CIFC39 H34 N2 O10 Zn2C 1 2/c 118.5664; 10.3393; 23.224
90; 119.006; 90
3899Moreau, Florian; Audebrand, Nathalie; Poriel, Cyril
9,9′-Spirobifluorene based zinc coordination polymers: a study on linker geometry and topology
CrystEngComm, 2020, 22, 293-303
7235234 CIFC26.5 H14 O5 ZnP 1 2/c 113.36; 17.2; 14.314
90; 94.69; 90
3278.2Moreau, Florian; Audebrand, Nathalie; Poriel, Cyril
9,9′-Spirobifluorene based zinc coordination polymers: a study on linker geometry and topology
CrystEngComm, 2020, 22, 293-303
7235235 CIFC53.33 H27.08 O9.33 Zn2F d -3 c :244.21; 44.21; 44.21
90; 90; 90
86410Moreau, Florian; Audebrand, Nathalie; Poriel, Cyril
9,9′-Spirobifluorene based zinc coordination polymers: a study on linker geometry and topology
CrystEngComm, 2020, 22, 293-303
7236906 CIFC30 H30 N4 OP 1 21/n 19.5818; 9.2966; 29.1439
90; 96.654; 90
2578.6Mathivanan, Moorthy; Tharmalingam, Balamurugan; Lin, Chia-Her; Pandiyan, Baskaran Vijaya; Thiagarajan, Viruthachalam; Murugesapandian, Balasubramanian
ESIPT-active multi-color aggregation-induced emission features of triphenylamine‒salicylaldehyde-based unsymmetrical azine family
CrystEngComm, 2020, 22, 213-228
7236907 CIFC30 H23 N3 OP 1 21/c 19.7349; 26.4673; 9.6839
90; 110.107; 90
2343.05Mathivanan, Moorthy; Tharmalingam, Balamurugan; Lin, Chia-Her; Pandiyan, Baskaran Vijaya; Thiagarajan, Viruthachalam; Murugesapandian, Balasubramanian
ESIPT-active multi-color aggregation-induced emission features of triphenylamine‒salicylaldehyde-based unsymmetrical azine family
CrystEngComm, 2020, 22, 213-228
7236908 CIFC27 H23 N3 O2P -19.0523; 9.4796; 15.3386
101.215; 96.659; 117.266
1115.46Mathivanan, Moorthy; Tharmalingam, Balamurugan; Lin, Chia-Her; Pandiyan, Baskaran Vijaya; Thiagarajan, Viruthachalam; Murugesapandian, Balasubramanian
ESIPT-active multi-color aggregation-induced emission features of triphenylamine‒salicylaldehyde-based unsymmetrical azine family
CrystEngComm, 2020, 22, 213-228
7236909 CIFC26 H21 N3 OP -17.4345; 7.7857; 18.3205
81.464; 87.016; 86.135
1045.36Mathivanan, Moorthy; Tharmalingam, Balamurugan; Lin, Chia-Her; Pandiyan, Baskaran Vijaya; Thiagarajan, Viruthachalam; Murugesapandian, Balasubramanian
ESIPT-active multi-color aggregation-induced emission features of triphenylamine‒salicylaldehyde-based unsymmetrical azine family
CrystEngComm, 2020, 22, 213-228
7236911 CIFC60 H60 N4 O50 Pr4P -323.2883; 23.2883; 14.1304
90; 90; 120
6636.8Gao, Wei; Huang, Hong; Zhou, Ai-Mei; Wei, Han; Liu, Jie-Ping; Zhang, Xiu-Mei
Three 3D LnIII-MOFs based on a nitro-functionalized biphenyltricarboxylate ligand: syntheses, structures, and magnetic properties
CrystEngComm, 2020, 22, 267-274
7236912 CIFC16 H9 Gd N O9.5P 1 21/c 113.649; 14.334; 7.994
90; 92.233; 90
1562.8Gao, Wei; Huang, Hong; Zhou, Ai-Mei; Wei, Han; Liu, Jie-Ping; Zhang, Xiu-Mei
Three 3D LnIII-MOFs based on a nitro-functionalized biphenyltricarboxylate ligand: syntheses, structures, and magnetic properties
CrystEngComm, 2020, 22, 267-274
7236913 CIFC15 H12 Dy N O11P -19.4885; 9.5857; 12.4176
93.605; 108.083; 112.343
971.8Gao, Wei; Huang, Hong; Zhou, Ai-Mei; Wei, Han; Liu, Jie-Ping; Zhang, Xiu-Mei
Three 3D LnIII-MOFs based on a nitro-functionalized biphenyltricarboxylate ligand: syntheses, structures, and magnetic properties
CrystEngComm, 2020, 22, 267-274
7238040 CIFC14 H11 F3 N2 O2P 1 21/c 17.538; 14.0607; 12.3766
90; 103.32; 90
1276.5Liu, Hao; Yang, Xing; Wu, Shanyu; Zhang, Mingtao; Parkin, Sean; Cao, Shuang; Li, Tonglei; Yu, Faquan; Long, Sihui
An investigation of the polymorphism of a potent nonsteroidal anti-inflammatory drug flunixin
CrystEngComm, 2020, 22, 448-457
7238041 CIFC14 H11 F3 N2 O2P 1 21/c 17.68546; 14.1282; 12.49862
90; 102.16; 90
1326.67Liu, Hao; Yang, Xing; Wu, Shanyu; Zhang, Mingtao; Parkin, Sean; Cao, Shuang; Li, Tonglei; Yu, Faquan; Long, Sihui
An investigation of the polymorphism of a potent nonsteroidal anti-inflammatory drug flunixin
CrystEngComm, 2020, 22, 448-457
7238042 CIFC51 H33 N5 O12 Zn3P b c n14.3343; 25.123; 18.1924
90; 90; 90
6551.5Yan, Peng; Yang, Jucai; Hao, Xiangying; Chen, Zhisheng; Shen, Guanhua; Zhao, Yanhua; Ma, Deyun; Zhu, Jiaxin
A microporous zinc‒organic framework with Lewis basic pyridyl sites for highly selective C2H2/CH4 and C2H2/CO2 gas separation
CrystEngComm, 2020, 22, 275-282
7238043 CIFC6 H10 N2 O2P 1 21 15.21733; 9.11328; 14.35413
90; 90.7911; 90
682.431Hützler, Wilhelm Maximilian; Mossou, Estelle; Vollrath, Ronnald; Kohagen, Miriam; El Ghrissi, Imadine; Grininger, Martin; Zaccai, Giuseppe; Smiatek, Jens; Oesterhelt, Dieter
Complex transitions between dihydrate and anhydrate forms of ectoine ‒ unexpected behavior of a highly hygroscopic compatible solute in the solid state
CrystEngComm, 2020, 22, 169-172
7238044 CIFC6 H14 N2 O4P 21 21 217.594; 8.6265; 13.3619
90; 90; 90
875.33Hützler, Wilhelm Maximilian; Mossou, Estelle; Vollrath, Ronnald; Kohagen, Miriam; El Ghrissi, Imadine; Grininger, Martin; Zaccai, Giuseppe; Smiatek, Jens; Oesterhelt, Dieter
Complex transitions between dihydrate and anhydrate forms of ectoine ‒ unexpected behavior of a highly hygroscopic compatible solute in the solid state
CrystEngComm, 2020, 22, 169-172
7238045 CIFC6 H14 N2 O4P 21 21 217.594; 8.6265; 13.3619
90; 90; 90
875.33Hützler, Wilhelm Maximilian; Mossou, Estelle; Vollrath, Ronnald; Kohagen, Miriam; El Ghrissi, Imadine; Grininger, Martin; Zaccai, Giuseppe; Smiatek, Jens; Oesterhelt, Dieter
Complex transitions between dihydrate and anhydrate forms of ectoine ‒ unexpected behavior of a highly hygroscopic compatible solute in the solid state
CrystEngComm, 2020, 22, 169-172
7239596 CIFC13.68 H13.68 As4 Ce24 Na2 O214 W36I -424.7106; 24.7106; 23.2547
90; 90; 90
14199.6Dufaye, Maxime; Duval, Sylvain; Stoclet, Gregory; Loiseau, Thierry
Influence of pH on CeIV-[AsIIIW9O33]9− association for the formation of hexanuclear cerium(iv) oxo-hydroxo-clusters stabilized by trivacant polyanions
CrystEngComm, 2020, 22, 371-380
7239597 CIFAs6 Ce12 Na18 O341 W58P -118.6179; 19.6067; 27.947
99.61; 105.262; 108.594
8970.2Dufaye, Maxime; Duval, Sylvain; Stoclet, Gregory; Loiseau, Thierry
Influence of pH on CeIV-[AsIIIW9O33]9− association for the formation of hexanuclear cerium(iv) oxo-hydroxo-clusters stabilized by trivacant polyanions
CrystEngComm, 2020, 22, 371-380
7239598 CIFC9 H9 As Ce6 Na6 O85.75 W9P -111.9097; 15.2185; 21.8082
90.152; 101.47; 101.06
3798.4Dufaye, Maxime; Duval, Sylvain; Stoclet, Gregory; Loiseau, Thierry
Influence of pH on CeIV-[AsIIIW9O33]9− association for the formation of hexanuclear cerium(iv) oxo-hydroxo-clusters stabilized by trivacant polyanions
CrystEngComm, 2020, 22, 371-380
7239599 CIFC3 H3 As3 Ce6 Na15 O156 W27P -118.4264; 19.3634; 26.7239
105.118; 98.139; 112.226
8207.4Dufaye, Maxime; Duval, Sylvain; Stoclet, Gregory; Loiseau, Thierry
Influence of pH on CeIV-[AsIIIW9O33]9− association for the formation of hexanuclear cerium(iv) oxo-hydroxo-clusters stabilized by trivacant polyanions
CrystEngComm, 2020, 22, 371-380
7239602 CIFC48 H28 Co N6 O4F d d 251.7838; 28.8494; 6.281
90; 90; 90
9383.4Li, Bin; Yan, Qing-Qing; Xu, Zhi-Qiang; Xu, Ying-Bo; Yong, Guo-Ping
Tuning the interpenetration of metal‒organic frameworks through changing ligand functionality: effect on gas adsorption properties
CrystEngComm, 2020, 22, 506-514
7239603 CIFC48 H28 N6 O4 ZnF d d 251.726; 29.1071; 6.2678
90; 90; 90
9436.8Li, Bin; Yan, Qing-Qing; Xu, Zhi-Qiang; Xu, Ying-Bo; Yong, Guo-Ping
Tuning the interpenetration of metal‒organic frameworks through changing ligand functionality: effect on gas adsorption properties
CrystEngComm, 2020, 22, 506-514
7239604 CIFC48 H30 Co2 N4 O9P 1 21/c 17.8353; 29.6326; 24.7561
90; 91.232; 90
5746.6Li, Bin; Yan, Qing-Qing; Xu, Zhi-Qiang; Xu, Ying-Bo; Yong, Guo-Ping
Tuning the interpenetration of metal‒organic frameworks through changing ligand functionality: effect on gas adsorption properties
CrystEngComm, 2020, 22, 506-514
7239626 CIFC28 H16 N2 O9 SmP 1 21/c 110.4782; 15.198; 18.5232
90; 114.6; 90
2682Xu, Qi-Wei; Dong, Gaoyun; Cui, Ruifang; Li, Xia
3D lanthanide-coordination frameworks constructed by a ternary mixed-ligand: crystal structure, luminescence and luminescence sensing
CrystEngComm, 2020, 22, 740-750
7239627 CIFC28 H16 Dy N2 O9P 1 21/c 110.415; 15.1696; 18.3689
90; 114.362; 90
2643.72Xu, Qi-Wei; Dong, Gaoyun; Cui, Ruifang; Li, Xia
3D lanthanide-coordination frameworks constructed by a ternary mixed-ligand: crystal structure, luminescence and luminescence sensing
CrystEngComm, 2020, 22, 740-750
7239628 CIFC28 H16 Gd N2 O9P 1 21/c 110.4591; 15.2111; 18.4571
90; 114.593; 90
2670.05Xu, Qi-Wei; Dong, Gaoyun; Cui, Ruifang; Li, Xia
3D lanthanide-coordination frameworks constructed by a ternary mixed-ligand: crystal structure, luminescence and luminescence sensing
CrystEngComm, 2020, 22, 740-750
7239629 CIFC28 H16 N2 O9 TbP 1 21/c 110.433; 15.2061; 18.4169
90; 114.466; 90
2659.4Xu, Qi-Wei; Dong, Gaoyun; Cui, Ruifang; Li, Xia
3D lanthanide-coordination frameworks constructed by a ternary mixed-ligand: crystal structure, luminescence and luminescence sensing
CrystEngComm, 2020, 22, 740-750
7239630 CIFC28 H20 Eu N2 O11P 1 21/c 110.4652; 15.1944; 18.4885
90; 114.554; 90
2674.05Xu, Qi-Wei; Dong, Gaoyun; Cui, Ruifang; Li, Xia
3D lanthanide-coordination frameworks constructed by a ternary mixed-ligand: crystal structure, luminescence and luminescence sensing
CrystEngComm, 2020, 22, 740-750
7239634 CIFC24 H50 N10 Na2 Ni O24 S2P -18.1407; 8.7295; 15.6983
78.8978; 79.5625; 88.0006
1076.6Purkayastha, Atanu; Dhar, Sourab; Mondal, Suvra Prakash; Franconetti, Antonio; Frontera, Antonio; Ganguly, Rakesh; Kirillov, Alexander M.; Misra, Tarun Kumar
Metal‒organic architectures driven by a multifunctional 6-aminouracil spacer: structures, noncovalent interactions, and conductivity
CrystEngComm, 2020, 22, 829-840
7239635 CIFC24 H36 K2 N10 O15.25 S2C 1 2/c 135.2528; 15.7804; 13.089
90; 109.954; 90
6844.3Purkayastha, Atanu; Dhar, Sourab; Mondal, Suvra Prakash; Franconetti, Antonio; Frontera, Antonio; Ganguly, Rakesh; Kirillov, Alexander M.; Misra, Tarun Kumar
Metal‒organic architectures driven by a multifunctional 6-aminouracil spacer: structures, noncovalent interactions, and conductivity
CrystEngComm, 2020, 22, 829-840
7239636 CIFC12 H18 N5 Na O8 SP 1 21/c 17.7666; 10.535; 20.5005
90; 90.853; 90
1677.2Purkayastha, Atanu; Dhar, Sourab; Mondal, Suvra Prakash; Franconetti, Antonio; Frontera, Antonio; Ganguly, Rakesh; Kirillov, Alexander M.; Misra, Tarun Kumar
Metal‒organic architectures driven by a multifunctional 6-aminouracil spacer: structures, noncovalent interactions, and conductivity
CrystEngComm, 2020, 22, 829-840
7239637 CIFC7 H7 Cu N O6P 1 21/c 17.207; 18.958; 6.43
90; 107.09; 90
839.7Muthukumar, Pandi; Pannipara, Mehboobali; Al-Sehemi, Abdullah G.; Moon, Dohyun; Anthony, Savarimuthu Philip
Polymorphs of a copper coordination compound: interlinking active sites enhance the electrocatalytic activity of the coordination polymer compared to the coordination complex
CrystEngComm, 2020, 22, 425-429
7239638 CIFC102 H106 Cl4 Cu4 Mn2 N22 O29P -114.582; 15.677; 25.158
87.217; 75.768; 78.204
5457Kianimehr, Ashkan; Akhbari, Kamran; White, Jonathan; Phuruangrat, Anukorn
The mechanochemical conversion of potassium coordination polymer nanostructures to interpenetrated sodium coordination polymers with halogen bond, metal‒carbon and metal‒metal interactions
CrystEngComm, 2020, 22, 888-894
7239639 CIFC8 H8 Br4 Na2 O8I 41 c d12.3021; 12.3021; 42.415
90; 90; 90
6419.2Kianimehr, Ashkan; Akhbari, Kamran; White, Jonathan; Phuruangrat, Anukorn
The mechanochemical conversion of potassium coordination polymer nanostructures to interpenetrated sodium coordination polymers with halogen bond, metal‒carbon and metal‒metal interactions
CrystEngComm, 2020, 22, 888-894
7239646 CIFC16 H23 N3 O2P 1 21/n 17.3955; 9.6559; 22.6536
90; 96.448; 90
1607.47Gurbanov, Atash V.; Kuznetsov, Maxim L.; Demukhamedova, Svetlana D.; Alieva, Irada N.; Godjaev, Niftali M.; Zubkov, Fedor I.; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Role of substituents on resonance assisted hydrogen bonding vs. intermolecular hydrogen bonding
CrystEngComm, 2020, 22, 628-633
7239647 CIFC14 H19 N3 O2P -17.4907; 9.7684; 10.3754
88.424; 75.466; 86.31
733.32Gurbanov, Atash V.; Kuznetsov, Maxim L.; Demukhamedova, Svetlana D.; Alieva, Irada N.; Godjaev, Niftali M.; Zubkov, Fedor I.; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Role of substituents on resonance assisted hydrogen bonding vs. intermolecular hydrogen bonding
CrystEngComm, 2020, 22, 628-633
7239648 CIFC15 H19 N3 O4.08P 1 21/c 17.5227; 15.5942; 13.0925
90; 94.426; 90
1531.31Gurbanov, Atash V.; Kuznetsov, Maxim L.; Demukhamedova, Svetlana D.; Alieva, Irada N.; Godjaev, Niftali M.; Zubkov, Fedor I.; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Role of substituents on resonance assisted hydrogen bonding vs. intermolecular hydrogen bonding
CrystEngComm, 2020, 22, 628-633

Blue left arrow Blue left arrow First | Blue left arrow Previous 50 | of 7 | Next 50 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

Back to the search form
Your own data is not in the COD? Deposit it, thanks!