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NiCoP nanoparticles encapsulated in cross-linked graphene aerogel to efficient hydrogen evolution reaction

机译:奈博纳米粒子包封在交联石墨烯气凝胶中以有效的氢进化反应

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摘要

The structure of a cheap and high-efficient electrochemical catalyst for hydrogen evolution reaction (HER) plays an essential impact in producing updatable hydrogen energy. Herein, we introduce a facile way to synthesize graphene aerogel inlaid with NiCoP nanoparticles (NiCoP-NPs@GA), which used seaweed biomass as precursors through a phosphorization route. In this work, graphene oxide (GO) with thin layer structure and carbon aerogel (CA) skeleton with a three-dimensional (3D) structure were connected in series to form a 3D-graphene aerogel (GA) as a composite material for conductive matrix. In addition, NiCoP nanoparticles (NiCoP-NPs) are uniformly encapsulated in GA nanoflakes, and the particles size can be controlled by the nanopores of the GA nanoflakes. The excellent 3D-GA matrix contains numerous open pores which can effectively circumvent volume expansion and aggregation of the NiCoP-NPs. Compared with NiCoP bulk, the NiCoP-NPs@ GA demonstrated the advantages of larger specific surface areas and better HER overpotential function of only 109 m V with an operational density of 10 mA/cm~2, along with a less Tafel gradient of 63 mV/dec in 0.5 M H_2SO_4. Our protocol opens a new avenue for synthesis of many transition metal catalytic makings and provides a preliminary research for their potential function in industry.
机译:用于氢气进化反应(她)的廉价和高效的电化学催化剂的结构在产生可更新的氢能量方面发挥着重要影响。在此,我们介绍了用乳头纳米颗粒(Nicop-NPS @ Ga)合成石墨烯气凝胶的容易方式,该石膏纳米颗粒(NICOP-NPS @ Ga)通过磷化术路线使用海藻生物量作为前体。在这项工作中,具有薄层结构的石墨烯(GO)和具有三维(3D)结构的碳气凝胶(CA)骨架串联连接,以形成3D-石墨烯气体(GA)作为导电矩阵的复合材料。此外,Nicop纳米颗粒(Nicop-nps)均匀地包封在Ga纳米薄片中,并且颗粒尺寸可以由Ga纳米薄片的纳米孔控制。优异的3D-GA矩阵包含许多开放的孔,可以有效地绕过尼克-NP的体积扩展和聚集。与Nicop Bulk相比,Nicop-NPS @ Ga展示了较大的特定表面积的优点,并更好地具有109毫升的过电函数,其操作密度为10 mA / cm〜2,以及63 mV的较少的Tafel梯度/ dec在0.5 m h_2so_4中。我们的协议为合成许多过渡金属催化作油的合成,并为其工业潜在功能提供了初步研究。

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  • 来源
    《Journal of materials science》 |2020年第16期|13521-13530|共10页
  • 作者单位

    School of Chemistry and Chemical Engineering Center of Analysis and Test Jiangsu University Zhenjiang 212013 People's Republic of China Physical Chemistry Technische Universitat Dresden Bergstr. 66b 01069 Dresden Germany;

    School of Chemistry and Chemical Engineering Center of Analysis and Test Jiangsu University Zhenjiang 212013 People's Republic of China;

    School of Chemistry and Chemical Engineering Center of Analysis and Test Jiangsu University Zhenjiang 212013 People's Republic of China;

    Physical Chemistry Technische Universitat Dresden Bergstr. 66b 01069 Dresden Germany;

    Physical Chemistry Technische Universitat Dresden Bergstr. 66b 01069 Dresden Germany;

    Physical Chemistry Technische Universitat Dresden Bergstr. 66b 01069 Dresden Germany;

    School of Life Sciences The Chinese University of Hong Kong Hong Kong People's Republic of China;

    School of Chemistry and Chemical Engineering Center of Analysis and Test Jiangsu University Zhenjiang 212013 People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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