科学研究

2022

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  • A Zirconium−Organic Framework Constructed from Saddle-Shaped Tetratopic Carboxylate for High-Rate and -Efficiency Iodine Capture

    Xia, H.-L.; Zhou, K.; Yu, L.; Wang, H.; Liu, X.-Y.*; Li, J.*
    Inorg. Chem. 2022, 61, 17109−17114.

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  • Photocatalytic Microbial Fuel Cells and Performance Applications: A Review

    Tong, Y.; Wei, J.; Mo, R.; Ma, H.*; Ai, F.*
    Front Chem 2022, 10, 953434.

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  • Manipulating the inorganic motif by kinetic control of antimony halide organic–inorganic hybrid materials for larger Stokes shift and significantly enhanced quantum efficiency

    Lin, F.; Tong, H.; Lin, H.; Liu, W.*
    Chem. Commun., 2022, 58 (90), 12596-12599.

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  • Tuning Metal–Organic Framework (MOF) Topology by Regulating Ligand and Secondary Building Unit (SBU) Geometry: Structures Built on 8-Connected M6 (M = Zr, Y) Clusters and a Flexible Tetracarboxyla...

    Li. X., Liu. J., Zhou. K., Ullah. S., Wang.H.*, Zou. J.*, Thonhauser. T., Li. J.*
    J. Am. Chem. Soc., 2022,144, 21702-21709.

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  • Reticular Chemistry with Art: A Case Study of Olympic Rings-Inspired Metal–Organic Frameworks

    Si. J., Xia. H.-L., Zhou. K., Li. J., Miao. J., Zhang. J., Wang.H., Qu. L.-L.*, Liu. X.-Y.*, Li. J.*
    J. Am. Chem. Soc., 2022,144,22170-22177.

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  • Temperature-Programmed Separation of Hexane Isomers by Porous Calcium Chloranilate Metal-Organic Framework

    Lin. Y., Yu. L., Ullah. S., Li. X., Wang.H.*, Xia. Q., Thonhauser. T., Li. J.*
    Angew. Chem. Inter. Ed., 2022,61,42.

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  • High-Capacity Splitting of Mono- and Dibranched Hexane Isomers by a Robust Zinc-Based Metal–Organic Framework

    Yu. L., Ullah. S., Wang.H.*, Xia. Q.*, Thonhauser. T., Li. J.*
    Angew. Chem. Inter. Ed., 2022,61,42,e202211359.

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  • Highly Luminescent Metal−Organic Frameworks Based on Binary Chromophoric Ligands Derived from Tetraphenylethylene

    Mao. S., Lin. Y., Li.X., Wang.H.*
    Cryst. Growth. Des., 2022,22,10,5791-5795.

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  • A microporous Zr6@Zr-MOF for the separation of Xe and Kr

    Guo. F., Zhou. K., Liu. J., Li.X., Wang.H.*
    Dalton Trans., 2022,51,10856-10859.

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  • Robust Metal–Organic Frameworks with High Industrial Applicability in Effi‐ cient Recovery C3H8 and C2H6 from Natural Gas Upgrading

    Xian. S., Peng. J., Pandey. H., Thonhauser. T., Wang.H.,* Li. J.*.
    Engineering, 2022.

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  • A Robust Ca-Based Microporous Metal−Organic Framework for Thermodynamic Separation of Hexane Isomers

    Li. X., Lin. Y., Yu. L., Zou. J.,* Wang. H.*.
    Inorg. Chem., 2022,61(34), 13229-13233.

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  • Flexible hydrogen-bonded organic framework to split ethane and ethylene

    Xie.F., Wang. H.,* Li. J.*.
    Matter, 2022,5(8), 2516-2518.

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  • Manipulation of Crystallization Kinetics for Perovskite Photovoltaics Prepared Using Two-Step Method

    Wang.F., Ge., C., Zhou. X., Liang. X., Duan. D., Lin. H., Zhu. Q.,* Hu. H.*.
    Crystals, 2022,12(6), 815.

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  • Recent Progress in Ionic Liquids for Stability Engineering of Perovskite Solar Cells

    Wang.F., Ge., C., Duan. D., Lin. H., Li. L.,* Naumov. P.,* Hu. H.*.
    Small Structures, 2022,10.1002/sstr.202200048.

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  • Ionic Liquid Engineering in Perovskite Photovoltaics

    Wang.F., Duan. D., Singh. M., Sutter-Fella. C., Lin. H., Li. L.,* Naumov. P.,* Hu. H.*.
    Energy Environmental Materials, 2022,10.1002/eem2.12435.

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  • Enantioselective Hydroxylation of Dihydrosilanes to Si-Chiral Silanols Catalyzed by In Situ Generated Copper(II) Species

    Yang. W., Guo. J., Wang. S.-G., Zhang. J.-Y., Fan. L.-W., Tian. Y., Wang. L.-L., Luan. C., Li. Z.-L., He. C., Wang. X.*, Gu. Q.-S., Liu. X.-Y.*.
    Angewandte Chemie International Edition. 2022, dio.org/10.1002/anie.202205743.

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  • A Water-Resistant Hydrogen-Bonded Organic Framework for Ethane/Ethylene Separation in Humid Environments

    Liu. J., Miao. J., Ullah. S., Zhou. K., Yu. L., Wang. H.,* Wang. Y.,* Thohnauser. T., Li. J.*.
    ACS Materials Lett. 2022, 4, 1227−1232.

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  • A Novel 4,4’-Bipiperidine-Based Organic Salt for Efficient and Stable 2D-3D Perovskite Solar Cells

    Li. Y., Zhang. J., Xiang. J., Hu. H.,* Zhong. H.,* Shi.Y.*.
    ACS Appl. Mater. Interfaces 2022, 10.1021/acsami.1c23115.

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  • Separation of naphtha on a series of ultramicroporous MOFs: A comparative study with zeolites

    Gong. Q., Yu. L., Ding. J., Zhang. S., Bo. Y., Chi. K., Wang. H.,* Xia. Q., He. S.,* Li. J.*.
    Separation and Purification Technology.2022, 121219.

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  • Balancing uptake and selectivity in a copper-based metal–organic framework for xenon and krypton separation

    Zhang. C., Dong. X., Chen. Y.,* Wu. H., Yu. L., Zhou. K., Wu. Y., Xia. Q., Wang. H.,* Han. Y., Li. J.*.
    Separation and Purification Technology.2022, 120932.

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