Research

  • 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.*.<br/> 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.*.<br/> Separation and Purification Technology.2022, 120932.

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  • Metal–organic frameworks with ftw-type connectivity: design, pore structure engineering, and potential applications

    Li. X., Wang. H.,* Zou. J.,* Li. J.*.<br/> CrystEngComm, 2022,24, 2189-2200.

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  • Adsorption and Release of 1-Methylcyclopropene by Metal–Organic Frameworks for Fruit Preservation

    Huang. L.-L.,Yu. L., Li. B., Li. B.-B., Wang. H.*, Li. J.*.<br/> ACS Materials Lett. 2022, 4, 10.1021/acsmaterialslett.2c00137.

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  • Advance and prospect of metal-organic frameworks for perovskite photovoltaic devices

    Liang. X., Zhou. X., Ge. Chuan., Lin. H., Satapathi. S., Zhu. Q.,* Hu. H.*.<br/> Organic Electronics, 2022,106546.

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  • Metal-Functionalized Hydrogels as Efficient Oxygen Evolution Electrocatalysts

    Tang. C., Thomas. B., Ramirez-Hernandez. M., Mikmekova. E., Asefa. T.* <br/> ACS Appl. Mater. Interfaces. 2022.10.1021/acsami.2c01667.

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  • High-Performance Selective CO2 Capture on a Stable and Flexible Metal–Organic Framework via Discriminatory Gate-Opening Effect

    Peng. J, Liu. Z., Wu. Y., Xian. S. X.,* Li. Z.*<br/> ACS Appl. Mater. Interfaces. 2022.10.1021/acsami.2c04779.

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  • Thermal derived bismuth nanoparticles on nitrogen-doped carbon aerogel enable selective electrochemical production of formate from CO2

    Liu. Z., Zhang. J., Y. Liang., Wang. H., Huang. X.*<br/> Journal of CO2 Utilization, 2022,61, 102031.

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  • Selective, Stable Production of Ethylene Using a Pulsed Cu-Based Electrode

    Zhang. J., Liu. Z., Guo. H., Lin. H., Wang. H., Liang. X., Hu. H., Xia. Q., Zou. X.,* Huang. X.*<br/> ACS Appl. Mater. Interfaces, 2022,10.1021/acsami.2c01230.

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  • Solid Electrolyte Interface Regulated by Solvent-in-Water Electrolyte Enables High-Voltage and Stable Aqueous Mg-MnO2 Batteries

    Xu. Y., Liu. Z., Zheng. X., Li. K., Wang. M., Yu. W., Hu. H.*., Chen. W.*<br/> Advanced Energy Materials, 2022,10.1002/aenm.202103352.

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  • Nucleophilic Interfacial Layer Enables Stable Zn Anodes for Aqueous Zn Batteries

    Xu. Y., Zheng. X., Sun. J.,Wang. W., Wang. M., Yuan. Y., Chuai. M., Chen. N., Hu. H.*., Chen. W.*<br/> Nano Letters, 2022,10.1021/acs.nanolett.2c00398.

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  • Tuning electrolyte solvation structures to enable stable aqueous Al/MnO2 battery

    Xu. Y., Ma. J., Jiang. T., Ding. H., Wang. W., Wang. M., Zheng. X., Sun. J., Yuan. Y., Chuai. M., Chen. N., Li. Z., Hu. H.*., Chen. W.*<br/> Energy Storage Materials, 2022, 47, 113-121.

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  • A Microporous Metal–Organic Framework Incorporating Both Primary and Secondary Building Units for Splitting Alkane Isomers

    Yu. L., Ullah. S.,Zhou. K., Xia. Q*., Wang. H.*, Tu. S., Huang. J., Xia. H.-L., Liu. X.-Y., Thonhauser. T., Li. J.*.<br/> Journal of The American Chemical Society, 2022, 10.1021/jacs.1c12068.

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  • Unraveling the Mechanism of Palladium-Catalyzed Base-Free Cross-Coupling of Vinyl Carboxylates: Dual Role of Arylboronic Acids as a Reducing Agent and a Coupling Partner

    Zhao X., Zhang. D.*, Wang. X.*.<br/> ACS Catal. 2022, 12, 10.1021/acscatal.1c00247.

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  • Mixed Dimensional Perovskites Heterostructure for Highly Efficient and Stable Perovskite Solar Cells

    Ge. C., Lu. J.-F., Singh. M., Ng. A., Yu. W., Lin. H., Satapathi. S.*, Hu. H.*.<br/> Solar RRL, 2022, 10.1002/solr.202100879.

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