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Nature communications. 2023 Oct 23;14(1):6733. doi: 10.1038/s41467-023-42542-6 Q114.72024

Enhanced and synergistic catalytic activation by photoexcitation driven S-scheme heterojunction hydrogel interface electric field

光激发S型异质结水凝胶界面电场的协同催化活化作用增强效应研究 翻译改进

Aiwen Wang  1, Meng Du  1, Jiaxin Ni  1, Dongqing Liu  1, Yunhao Pan  1, Xiongying Liang  1, Dongmei Liu  2, Jun Ma  1, Jing Wang  3  4, Wei Wang  5

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作者单位

  • 1 State Key Laboratory of Urban Water Resource and Environment (SKLUWRE), School of Environment, Harbin Institute of Technology, Harbin, 150090, P. R. China.
  • 2 State Key Laboratory of Urban Water Resource and Environment (SKLUWRE), School of Environment, Harbin Institute of Technology, Harbin, 150090, P. R. China. ldm819@126.com.
  • 3 Institute of Environmental Engineering, ETH Zürich, Zürich, 8093, Switzerland. jing.wang@ifu.baug.ethz.ch.
  • 4 Laboratory for Advanced Analytical Technologies, Empa, Swiss Federal Laboratories for Materials Science and Technology, Dübendorf, 8600, Switzerland. jing.wang@ifu.baug.ethz.ch.
  • 5 State Key Laboratory of Urban Water Resource and Environment (SKLUWRE), School of Environment, Harbin Institute of Technology, Harbin, 150090, P. R. China. wangweirs@hit.edu.cn.
  • DOI: 10.1038/s41467-023-42542-6 PMID: 37872207

    摘要 Ai翻译

    The regulation of heterogeneous material properties to enhance the peroxymonosulfate (PMS) activation to degrade emerging organic pollutants remains a challenge. To solve this problem, we synthesize S-scheme heterojunction PBA/MoS2@chitosan hydrogel to achieve photoexcitation synergistic PMS activation. The constructed heterojunction photoexcited carriers undergo redox conversion with PMS through S-scheme transfer pathway driven by the directional interface electric field. Multiple synergistic pathways greatly enhance the reactive oxygen species generation, leading to a significant increase in doxycycline degradation rate. Meanwhile, the 3D polymer chain spatial structure of chitosan hydrogel is conducive to rapid PMS capture and electron transport in advanced oxidation process, reducing the use of transition metal activator and limiting the leaching of metal ions. There is reason to believe that the synergistic activation of PMS by S-scheme heterojunction regulated by photoexcitation will provide a new perspective for future material design and research on enhancing heterologous catalysis oxidation process.

    Keywords:photoexcitation driven; s-scheme heterojunction; hydrogel interface; electric field

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    期刊名:Nature communications

    缩写:NAT COMMUN

    ISSN:2041-1723

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    IF/分区:14.7/Q1

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    Enhanced and synergistic catalytic activation by photoexcitation driven S-scheme heterojunction hydrogel interface electric field