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PtNi nanoparticles embedded in porous silica microspheres as highly active catalysts for p-nitrophenol hydrogenation to p-aminophenol

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  1. Article

    Open Access

    Engineering unsymmetrically coordinated Cu-S1N3 single atom sites with enhanced oxygen reduction activity

    Atomic interface regulation is thought to be an efficient method to adjust the performance of single atom catalysts. Herein, a practical strategy was reported to rationally design single copper atoms coordinat...

    Huishan Shang, **angyi Zhou, Juncai Dong, Ang Li, Xu Zhao in Nature Communications (2020)

  2. Article

    Open Access

    Complementary Operando Spectroscopy identification of in-situ generated metastable charge-asymmetry Cu2-CuN3 clusters for CO2 reduction to ethanol

    Copper-based materials can reliably convert carbon dioxide into multi-carbon products but they suffer from poor activity and product selectivity. The atomic structure-activity relationship of electrocatalysts ...

    **aozhi Su, Zhuoli Jiang, **g Zhou, Hengjie Liu, Danni Zhou in Nature Communications (2022)

  3. Article

    Open Access

    A replacement strategy for regulating local environment of single-atom Co-SxN4−x catalysts to facilitate CO2 electroreduction

    The performances of single-atom catalysts are governed by their local coordination environments. Here, a thermal replacement strategy is developed for the synthesis of single-atom catalysts with precisely cont...

    Jia**g Pei, Huishan Shang, Junjie Mao, Zhe Chen, Rui Sui in Nature Communications (2024)