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首页> 外文期刊>Small >Facile, Room Temperature, Electroless Deposited (Fe_(1-x),Mn_x)OOH Nanosheets as Advanced Catalysts: The Role of Mn Incorporation
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Facile, Room Temperature, Electroless Deposited (Fe_(1-x),Mn_x)OOH Nanosheets as Advanced Catalysts: The Role of Mn Incorporation

机译:容易,室温,化学沉积(Fe_(1-x),mn_x)ooh nanosheets作为高级催化剂:Mn IncloudAlination的作用

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摘要

Herein, bimetallic iron (Fe)-manganese (Mn) oxyhydroxide ((Fe_(1-x),Mn_x)OOH, FeMnOOH) nanosheets on fluorine-doped tin oxide conducting substrates and on semiconductor photoanodes are synthesized by a facile, room temperature, electroless deposition method as catalysts for both electrochemical and photoelectrochemical (PEC) water splitting, respectively. Surprisingly, Mn-doped FeOOH can significantly modulate the nanosheet morphology to increase the active surface area, boost more active sites, and augment the intrinsic activity by tuning the electronic structure of FeOOH. Due to the 2D nanosheet architecture, the optimized FeMnOOH exhibits superior electrochemical activity and outstanding durability for the oxygen evolution reaction with a low overpotential of 246 mV at 10 mA cm~(-2) and 414 mV at 100 mA cm~(-2), and long-term stability for 40 h without decay, which is comparable to the best electrocatalysts for water oxidation reported in the literature. By integrating with semiconductor photoanodes (such as α-Fe_2O_3 nanorod (NR) arrays), bimetallic FeMnOOH catalysts achieve solar-driven water splitting with a significantly enhanced PEC performance (3.36 mA cm~(-2) at 1.23 V vs reversible hydrogen electrode (RHE)) with outstanding long-term stability (≈8 h) compared to that of the bare Fe_2O_3 NR (0.92 mA cm~(-2) at 1.23 V vs RHE).
机译:本文中,通过容易,室温合成了在氟掺杂氧化锡氧化物上和半导体光阳极上的双金属铁(Fe_(Fe_(1-x),mn_x)OOH,FEMNOOH)纳米晶片,FEASOOLH)纳米晶片,电化学沉积法作为电化学和光电子化学(PEC)水分裂的催化剂。令人惊讶的是,Mn-Doped FeOOH可以显着调节纳米切片形态以增加活性表面积,促进更多活动位点,并通过调整FeOOH的电子结构来增强内在活动。由于2D纳米片架构,优化的FEMNOOH表现出优异的电化学活性和具有246mV的低过电位的氧气进化反应的卓越耐久性,在10mA cm〜(-2)和414mV下为100 mA cm〜(-2)并且长期稳定性为40小时而没有腐烂,可与文献中报告的水氧化的最佳电催化剂相媲美。通过与半导体光电(如α-Fe_2O_3纳米棒(NR)阵列)集成,Bimetallic Femnooh催化剂实现太阳能驱动的水分裂,具有显着增强的PEC性能(3.36 mA cm〜(-2),在1.23V Vs可逆氢电极( rhe))与裸FE_2O_3 NR(0.92 mA cm〜(-2)的裸FE_2O_3 NR(0.92 mA cm〜(-2)为1.23V VS RHE),RHE)。

著录项

  • 来源
    《Small》 |2018年第30期|共8页
  • 作者单位

    Optoelectronics Convergence Research Center and Department of Materials Science and Engineering Chonnam National University 300 Yongbong-Dong Buk-Gu Gwangju 61186 South Korea;

    Optoelectronics Convergence Research Center and Department of Materials Science and Engineering Chonnam National University 300 Yongbong-Dong Buk-Gu Gwangju 61186 South Korea;

    Department of Physics and Astronomy and Wright Center for Photovoltaic Innovation and Commercialization University of Toledo Toledo OH 43606 USA;

    Optoelectronics Convergence Research Center and Department of Materials Science and Engineering Chonnam National University 300 Yongbong-Dong Buk-Gu Gwangju 61186 South Korea;

    Optoelectronics Convergence Research Center and Department of Materials Science and Engineering Chonnam National University 300 Yongbong-Dong Buk-Gu Gwangju 61186 South Korea;

    Department of Chemistry Education and Optoelectronics Convergence Research Center Chonnam National University 300 Yongbong-Dong Buk-Gu Gwangju 61186 South Korea;

    Optoelectronics Convergence Research Center and Department of Materials Science and Engineering Chonnam National University 300 Yongbong-Dong Buk-Gu Gwangju 61186 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    facile room temperature electroless deposition; (Fe_(1-x); Mn_x)OOH (FeMnOOH); nanosheets; oxygen evolution catalysts; photoelectrochemical water splitting;

    机译:便利室温度无电沉积;(Fe_(1-x);mn_x)ooh(femnooh);nanosheets;氧气进化催化剂;光电化学水分裂;

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