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Pt nanodots monolayer modified mesoporous Cu@CuxO nanowires for improved overall water splitting reactivity

机译:Pt纳米孔单层改性介孔Cu @ Cuxo纳米线,用于改善整体水分裂反应性

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摘要

A Pt nanodots monolayer with ultra-low surface loading of 0.48 at% integrating onto a mesoporous complex nanostructure of Cu@CuxO nanowires (NWs) supported by a three-dimensional substrate is developed via a versatile and effective deposition strategy of the galvanic displacement between Cu monolayer and PtCl42- in an effort to minimize Pt catalyst usage. The uniform and ultra-small Pt nanodots ( similar to 2 nm) achieved full coverage on NWs leads to significant structural modulation, along with increased hierarchical and disorder degree. It also generates high Pt-Cu interaction, as evidenced by the crystal lattice deformation of metallic phases and the charge transfer from Cu to Pt, leading to enhancement towards both of hydrogen evolution (HER) and oxygen evolution (OER) processes. The hybrid exhibits low overpotential values of 72 mV and 250 mV at 10 mA cm(-2) for HER and OER, respectively, and these are superior to those of other surveyed materials. The mass activity of hybrid is around 3.1 times higher than commercial Pt-C (10 wt%) for HER and 6.4 times higher than Pt-C and RuO2-C for OER under similar testing conditions. This research may serve as a promising method for developing electrocatalysts with high activity but minimal Pt usage towards water splitting.
机译:具有超低表面负载的Pt纳米蛋白单层,其%在三维衬底支撑的Cu @ Cuxo纳米线(NWS)上的介孔复合纳米结构上的0.48At%的单层是通过Cu之间的电流位移的多功能和有效的沉积策略而开发的单层和PTCL42-努力减少PT催化剂使用。均匀和超小型Pt纳米蛋白(类似于2nm)在NWS上实现了完全覆盖,导致显着的结构调制,以及增加的分层和无序程度。它还产生高PT-Cu相互作用,如金属相的晶格变形和从Cu到Pt的电荷转移所证明,导致氢化(她)和氧气进化(Oer)工艺的增强。杂种分别表现出72mV和250mV的低过电值,分别为她的10 mA cm(-2),并且这些是优于其他受测量材料的物质。杂种的质量活性比在类似的试验条件下,比商业PT-C(10wt%)高出3.1倍,比商业Pt-C(10wt%)和比Pt-C和Ruo2-C高的6.4倍。该研究可以作为开发具有高活性的电催化剂的有希望的方法,但对水分裂的最小Pt使用量。

著录项

  • 来源
    《Nano Energy》 |2019年第2019期|共13页
  • 作者单位

    Chonbuk Natl Univ Dept BIN Convergence Technol BK21 Plus Global Program Adv Mat Inst BIN Convergence Technol Jeonju 54896 Jeonbuk South Korea;

    Chonbuk Natl Univ Dept BIN Convergence Technol BK21 Plus Global Program Adv Mat Inst BIN Convergence Technol Jeonju 54896 Jeonbuk South Korea;

    Chonbuk Natl Univ Dept BIN Convergence Technol BK21 Plus Global Program Adv Mat Inst BIN Convergence Technol Jeonju 54896 Jeonbuk South Korea;

    Chonbuk Natl Univ Dept BIN Convergence Technol BK21 Plus Global Program Adv Mat Inst BIN Convergence Technol Jeonju 54896 Jeonbuk South Korea;

    Chonbuk Natl Univ Dept BIN Convergence Technol BK21 Plus Global Program Adv Mat Inst BIN Convergence Technol Jeonju 54896 Jeonbuk South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

    Platinum nanodots monolayer; Copper-copper oxide nanoneedles; Mesoporous electrocatalyst; Water splitting;

    机译:铂纳米蛋白单层;铜 - 氧化铜纳尼铜;中孔电催化剂;水分裂;

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