首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Zn Doped FeCo Layered Double Hydroxide Nanoneedle Arrays with Partial Amorphous Phase for Efficient Oxygen Evolution Reaction
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Zn Doped FeCo Layered Double Hydroxide Nanoneedle Arrays with Partial Amorphous Phase for Efficient Oxygen Evolution Reaction

机译:Zn掺杂FECO层状双氢氧化物纳尼扎带阵列,具有部分非晶相对于有效的氧气进化反应

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摘要

Exploiting earth-abundant electrocatalysts with comparable high performance and stability to the benchmarking noble metal-based catalysts for oxygen evolution reaction (OER) is of fundamental importance for promising sustainable energy conversion and storage technologies. Herein, we report an in situ grown zinc doped cobalt–iron layered double hydroxide (ZnFeCo LDH) with a unique needle-like nanostructure and partial amorphous phase for highly efficient OER catalysts. Benefitting from the nanoneedle arrays structure, partial amorphous phase, tunable zinc doping, and surface trivalent cobalt ions, partly amorphous Zn doped FeCo LDH 1D nanoneedle arrays (PA-ZnFeCo LDH) exhibited superior electrocatalytic OER activity, with a small Tafel slope of 58.73 mV per decade, an exceptional overpotential of 221, 276, and 294 mV to drive 10, 100, and 300 mA cm~(–2), respectively, and long-term electrochemical stability of 100?000 s. This work offers insights into the rational design and synthesis of unique 1D non-noble metal hydroxide with partial amorphous phase as highly efficient OER electrocatalysis.
机译:利用与基于基于基于贵金属金属基催化剂的高性能和稳定性的地球丰富的电催化剂用于氧气进化反应(OER)的基础催化剂具有基本重要性,可用于承诺可持续的可持续能源转换和储存技术。在此,我们将原位生长的锌掺杂的钴 - 铁层双氢氧化物(ZnFeco LDH)用独特的针状纳米结构和用于高效oer催化剂的部分非晶相。从纳尼罩阵列结构中受益,部分非晶相,可调谐锌掺杂和表面三价钴离子,部分无定形Zn掺杂的FECO LDH 1D纳米纳米型阵列(PA-ZnFeco LDH)表现出优异的电催化oer活性,具有58.73 mV的小Tafel斜率每十年,分别是221,276和294 mV的特殊过电位,分别为驱动10,100和300 mA cm〜(2),以及100 000秒的长期电化学稳定性。这项工作提供了具有部分非晶相的独特1D非高贵金属氢氧化物的合理设计和合成的见解,作为高效的oer电寄生分析。

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