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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A bifunctional hexa-filamentous microfibril multimetallic foam: an unconventional high-performance electrode for total water splitting under industrial operation conditions
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A bifunctional hexa-filamentous microfibril multimetallic foam: an unconventional high-performance electrode for total water splitting under industrial operation conditions

机译:双官能六叶丝状微纤维多金属泡沫:在工业运行条件下的总水分裂的非传统高性能电极

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摘要

Cellulose in various forms possesses high strength, low density, and high aspect ratio with a three-dimensional open network structure, making them ideal candidates as current collectors in energy conversion application. Herein, a surface rough-cellulose-based bamboo fiber with unique and naturally-convoluted morphology is adopted for the fabrication of catalytically active cobalt substrates for water splitting. For the efficient evolution of hydrogen and oxygen, cobalt-based bimetallic alloys, namely, cobalt-molybdenum and cobalt-iron, were electrodeposited. The proposed system possesses a highly macro-porous network of hexa-filament micro-fibrils that demonstrate exceptional catalytic activities. In quantitative terms, the anodic and cathodic current density of 50 and -10 mA cm(-2) at respective overpotentials (eta) of 250 and 46 mV with a low activation energy (E-a) of 28 kJ mol(-1) were achieved. Moreover, when operated under harsh industrial standards of 5 M KOH@343 K, electrodes demonstrate excellent water electrolyzing catalytic activities (eta(-100(HER)) = 147 mV; eta(100(OER)) = 209 mV). This work, thus, promises a new strategy for designing electrode systems that are highly efficient as well as economical as the substrate was obtained from a ubiquitous earth-friendly material for energy conversion application.
机译:各种形式的纤维素具有高强度、低密度和高深宽比,具有三维开放网络结构,是能量转换应用中理想的集电器。在此,采用具有独特且自然卷曲形态的表面粗糙纤维素基竹纤维来制备用于分解水的催化活性钴基质。为了有效地释放氢和氧,电沉积了钴基双金属合金,即钴钼和钴铁。该系统具有高度宏观多孔的六丝微纤维网络,具有优异的催化活性。在定量方面,在250和46 mV的过电位(eta)和28 kJ mol(-1)的低活化能(E-a)下,阳极和阴极电流密度分别达到50和-10 mA cm(-2)。此外,在严格的5米工业标准下运行时KOH@343K,电极表现出良好的水电解催化活性(eta(-100(HER))=147mV;eta(100(OER))=209毫伏)。因此,这项工作为设计电极系统提供了一种新的策略,这种电极系统既高效又经济,因为基板是从一种普遍存在的用于能量转换应用的地球友好材料中获得的。

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