Search results
Results: 757
Number of items: 757
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Chen, Y., Wu, Z., Fan, L., Krishna, R., Huang, H., Wang, Y., Xiong, Q., Li, J., & Li, L. (2024). CCDC 2110177: Experimental Crystal Structure Determination [Data set]. Cambridge Crystallographic Data Centre. https://doi.org/10.5517/ccdc.csd.cc28tt75
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Chen, Y., Wu, Z., Fan, L., Krishna, R., Huang, H., Wang, Y., Xiong, Q., Li, J., & Li, L. (2024). CCDC 2246837: Experimental Crystal Structure Determination [Data set]. Cambridge Crystallographic Data Centre. https://doi.org/10.5517/ccdc.csd.cc2ff0mj
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Yang, R., Wang, Y., Cao, J.-W., Ye, Z.-M., Pham, T., Forrest, K. A., Krishna, R., Chen, H., Li, L., Ling, B.-K., Zhang, T., Gao, T., Jiang, X., Xu, X.-O., Ye, Q.-H., & Chen, K.-J. (2024). CCDC 2176255: Experimental Crystal Structure Determination [Data set]. Cambridge Crystallographic Data Centre. https://doi.org/10.5517/ccdc.csd.cc2c1kss
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Yang, R., Wang, Y., Cao, J.-W., Ye, Z.-M., Pham, T., Forrest, K. A., Krishna, R., Chen, H., Li, L., Ling, B.-K., Zhang, T., Gao, T., Jiang, X., Xu, X.-O., Ye, Q.-H., & Chen, K.-J. (2024). CCDC 2176256: Experimental Crystal Structure Determination [Data set]. Cambridge Crystallographic Data Centre. https://doi.org/10.5517/ccdc.csd.cc2c1ktt
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Chen, Y., Wu, Z., Fan, L., Krishna, R., Huang, H., Wang, Y., Xiong, Q., Li, J., & Li, L. (2024). Direct Ethylene Purification from Cracking Gas via a Metal-Organic Framework Through Pore Geometry Fitting. Engineering, 41, 84-92. https://doi.org/10.1016/j.eng.2024.01.024 -
Wang, G.-D., Li, Y.-Z., Krishna, R., Yan, Z.-Z., Hou, L., Wang, Y.-Y., & Zhu, Z. (2024). Fine-tuning the pore environment of isoreticular metal-organic frameworks through installing functional sites for boosting C2H6/C2H4 separation. Chemical engineering journal, 485, Article 149587. https://doi.org/10.1016/j.cej.2024.149587 -
Yang, R., Wang, Y., Cao, J.-W., Ye, Z.-M., Pham, T., Forrest, K. A., Krishna, R., Chen, H., Li, L., Ling, B.-K., Zhang, T., Gao, T., Jiang, X., Xu, X.-O., Ye, Q.-H., & Chen, K.-J. (2024). Hydrogen bond unlocking-driven pore structure control for shifting multi-component gas separation function. Nature Communications, 15, Article 804. https://doi.org/10.1038/s41467-024-45081-w -
Guo, X.-Z., Lin, B., Xiong, G.-Z., Krishna, R., Zhang, Z.-R., Liu, Q.-Z., Zhang, Z.-X., Fan, L., Zhang, J., & Li, B. (2024). Construction of negative electrostatic sugared gourd pore within nickel-based metal-organic framework for one-step purification acetylene from ethylene and carbon dioxide mixture. Chemical engineering journal, 498, Article 154734. https://doi.org/10.1016/j.cej.2024.154734 -
Krishna, R., & van Baten, J. M. (2024). Fundamental insights into the variety of factors that influence water/alcohol membrane permeation selectivity. Journal of Membrane Science, 698, Article 122635. https://doi.org/10.1016/j.memsci.2024.122635 -
Yang, S.-Q., Krishna, R., Zhou, L., Li, Y.-L., Xing, B., Zhang, Q., Zhang, F.-Y., & Hu, T.-L. (2024). A thermostable calcium-based metal-organic framework for efficient capture and separation of acetylene from ternary mixture. Separation and Purification Technology, 329, Article 125167. https://doi.org/10.1016/j.seppur.2023.125167
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