Crystallography Open Database
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Searching journal of publication like 'CrystEngComm' volume of publication is 22
COD ID | Links | Formula | Space group | Cell parameters | Cell volume | Bibliography |
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7235220 | CIF | C80 H78 O14 | P -1 | 9.18848; 18.3718; 19.6091 98.7879; 92.6442; 97.7172 | 3234.19 | Okayasu, 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 | CIF | C28 H17 N O2 | P b c n | 11.97202; 12.277; 12.64035 90; 90; 90 | 1857.88 | Okayasu, 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 | CIF | C42 H42 N4 O11 | C 1 c 1 | 10.2344; 33.477; 11.5077 90; 93.536; 90 | 3935.2 | Okayasu, 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 | CIF | C40 H26 N2 O4 | P 1 21/c 1 | 14.3333; 11.8876; 16.9672 90; 96.463; 90 | 2872.64 | Okayasu, 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 | CIF | C42 H43 N4 O11 | P n a 21 | 33.4734; 10.5712; 11.1961 90; 90; 90 | 3961.8 | Okayasu, 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 | CIF | C44.8 H39.6 N3.6 O8.2 | P -1 | 10.3818; 10.9676; 18.7727 95.299; 98.714; 91.279 | 2102.39 | Okayasu, 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 | CIF | C42 H26 N2 O4 | P b c a | 12.1391; 12.7561; 38.9751 90; 90; 90 | 6035.2 | Okayasu, 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 | CIF | C27 H24 Cl4 Cu N2 O5 | R -3 :H | 30.1293; 30.1293; 8.9281 90; 90; 120 | 7018.9 | Liu, 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 | CIF | C24 H16 Co N2 O4 | P 1 21/n 1 | 8.7775; 6.8216; 16.1117 90; 105.151; 90 | 931.18 | Liu, 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 | CIF | C26 H22 Cl2 N2 O5 Zn | C 1 2/c 1 | 15.516; 17.11; 9.6566 90; 95.233; 90 | 2552.9 | Liu, 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 | CIF | C12 H9 Cu I N O2 | P 1 21/c 1 | 12.4544; 4.099; 23.844 90; 103.822; 90 | 1182 | Liu, 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 | CIF | C27 H26 Cl2 Co N2 O6 | R -3 :H | 31.087; 31.087; 8.954 90; 90; 120 | 7494 | Liu, 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 | CIF | C29 H12 O10 Zn2 | P -1 | 10.75; 13.933; 14.348 73.692; 74.143; 68.269 | 1881.1 | Moreau, 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 | CIF | C39 H34 N2 O10 Zn2 | C 1 2/c 1 | 18.5664; 10.3393; 23.224 90; 119.006; 90 | 3899 | Moreau, 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 | CIF | C26.5 H14 O5 Zn | P 1 2/c 1 | 13.36; 17.2; 14.314 90; 94.69; 90 | 3278.2 | Moreau, 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 | CIF | C53.33 H27.08 O9.33 Zn2 | F d -3 c :2 | 44.21; 44.21; 44.21 90; 90; 90 | 86410 | Moreau, 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 | CIF | C30 H30 N4 O | P 1 21/n 1 | 9.5818; 9.2966; 29.1439 90; 96.654; 90 | 2578.6 | Mathivanan, 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 | CIF | C30 H23 N3 O | P 1 21/c 1 | 9.7349; 26.4673; 9.6839 90; 110.107; 90 | 2343.05 | Mathivanan, 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 | CIF | C27 H23 N3 O2 | P -1 | 9.0523; 9.4796; 15.3386 101.215; 96.659; 117.266 | 1115.46 | Mathivanan, 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 | CIF | C26 H21 N3 O | P -1 | 7.4345; 7.7857; 18.3205 81.464; 87.016; 86.135 | 1045.36 | Mathivanan, 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 | CIF | C60 H60 N4 O50 Pr4 | P -3 | 23.2883; 23.2883; 14.1304 90; 90; 120 | 6636.8 | Gao, 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 | CIF | C16 H9 Gd N O9.5 | P 1 21/c 1 | 13.649; 14.334; 7.994 90; 92.233; 90 | 1562.8 | Gao, 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 | CIF | C15 H12 Dy N O11 | P -1 | 9.4885; 9.5857; 12.4176 93.605; 108.083; 112.343 | 971.8 | Gao, 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 | CIF | C14 H11 F3 N2 O2 | P 1 21/c 1 | 7.538; 14.0607; 12.3766 90; 103.32; 90 | 1276.5 | Liu, 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 | CIF | C14 H11 F3 N2 O2 | P 1 21/c 1 | 7.68546; 14.1282; 12.49862 90; 102.16; 90 | 1326.67 | Liu, 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 | CIF | C51 H33 N5 O12 Zn3 | P b c n | 14.3343; 25.123; 18.1924 90; 90; 90 | 6551.5 | Yan, 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 | CIF | C6 H10 N2 O2 | P 1 21 1 | 5.21733; 9.11328; 14.35413 90; 90.7911; 90 | 682.431 | Hützler, 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 | CIF | C6 H14 N2 O4 | P 21 21 21 | 7.594; 8.6265; 13.3619 90; 90; 90 | 875.33 | Hützler, 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 | CIF | C6 H14 N2 O4 | P 21 21 21 | 7.594; 8.6265; 13.3619 90; 90; 90 | 875.33 | Hützler, 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 | CIF | C13.68 H13.68 As4 Ce24 Na2 O214 W36 | I -4 | 24.7106; 24.7106; 23.2547 90; 90; 90 | 14199.6 | Dufaye, 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 | CIF | As6 Ce12 Na18 O341 W58 | P -1 | 18.6179; 19.6067; 27.947 99.61; 105.262; 108.594 | 8970.2 | Dufaye, 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 | CIF | C9 H9 As Ce6 Na6 O85.75 W9 | P -1 | 11.9097; 15.2185; 21.8082 90.152; 101.47; 101.06 | 3798.4 | Dufaye, 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 | CIF | C3 H3 As3 Ce6 Na15 O156 W27 | P -1 | 18.4264; 19.3634; 26.7239 105.118; 98.139; 112.226 | 8207.4 | Dufaye, 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 | CIF | C48 H28 Co N6 O4 | F d d 2 | 51.7838; 28.8494; 6.281 90; 90; 90 | 9383.4 | Li, 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 | CIF | C48 H28 N6 O4 Zn | F d d 2 | 51.726; 29.1071; 6.2678 90; 90; 90 | 9436.8 | Li, 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 | CIF | C48 H30 Co2 N4 O9 | P 1 21/c 1 | 7.8353; 29.6326; 24.7561 90; 91.232; 90 | 5746.6 | Li, 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 | CIF | C28 H16 N2 O9 Sm | P 1 21/c 1 | 10.4782; 15.198; 18.5232 90; 114.6; 90 | 2682 | Xu, 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 | CIF | C28 H16 Dy N2 O9 | P 1 21/c 1 | 10.415; 15.1696; 18.3689 90; 114.362; 90 | 2643.72 | Xu, 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 | CIF | C28 H16 Gd N2 O9 | P 1 21/c 1 | 10.4591; 15.2111; 18.4571 90; 114.593; 90 | 2670.05 | Xu, 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 | CIF | C28 H16 N2 O9 Tb | P 1 21/c 1 | 10.433; 15.2061; 18.4169 90; 114.466; 90 | 2659.4 | Xu, 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 | CIF | C28 H20 Eu N2 O11 | P 1 21/c 1 | 10.4652; 15.1944; 18.4885 90; 114.554; 90 | 2674.05 | Xu, 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 | CIF | C24 H50 N10 Na2 Ni O24 S2 | P -1 | 8.1407; 8.7295; 15.6983 78.8978; 79.5625; 88.0006 | 1076.6 | Purkayastha, 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 | CIF | C24 H36 K2 N10 O15.25 S2 | C 1 2/c 1 | 35.2528; 15.7804; 13.089 90; 109.954; 90 | 6844.3 | Purkayastha, 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 | CIF | C12 H18 N5 Na O8 S | P 1 21/c 1 | 7.7666; 10.535; 20.5005 90; 90.853; 90 | 1677.2 | Purkayastha, 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 | CIF | C7 H7 Cu N O6 | P 1 21/c 1 | 7.207; 18.958; 6.43 90; 107.09; 90 | 839.7 | Muthukumar, 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 | CIF | C102 H106 Cl4 Cu4 Mn2 N22 O29 | P -1 | 14.582; 15.677; 25.158 87.217; 75.768; 78.204 | 5457 | Kianimehr, 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 | CIF | C8 H8 Br4 Na2 O8 | I 41 c d | 12.3021; 12.3021; 42.415 90; 90; 90 | 6419.2 | Kianimehr, 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 | CIF | C16 H23 N3 O2 | P 1 21/n 1 | 7.3955; 9.6559; 22.6536 90; 96.448; 90 | 1607.47 | Gurbanov, 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 | CIF | C14 H19 N3 O2 | P -1 | 7.4907; 9.7684; 10.3754 88.424; 75.466; 86.31 | 733.32 | Gurbanov, 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 | CIF | C15 H19 N3 O4.08 | P 1 21/c 1 | 7.5227; 15.5942; 13.0925 90; 94.426; 90 | 1531.31 | Gurbanov, 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 |
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