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首页> 外文期刊>Angewandte Chemie >In Situ Electrochemical Conversion of an Ultrathin Tannin Nickel Iron Complex Film as an Efficient Oxygen Evolution Reaction Electrocatalyst
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In Situ Electrochemical Conversion of an Ultrathin Tannin Nickel Iron Complex Film as an Efficient Oxygen Evolution Reaction Electrocatalyst

机译:原位电化学转化超薄单宁镍铁复合膜作为高效的氧气进化反应电催化剂

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摘要

The oxygen evolution reaction (OER) is an important half reaction in many energy conversion and storage techniques. However, the development of a low-cost easy-prepared OER electrocatalyst with high mass activity and rapid kinetics is still challenging. Herein, we report the facile deposition of tannin-NiFe (TANF) complex film on carbon fiber paper (CP) as a highly efficient OER electrocatalyst. TANF gives rapid OER reaction kinetics with a very small Tafel slope of 28 mV dec(-1). The mass activity of TANF reaches 9.17 x 10(3) Ag-1 at an overpotential of 300 mV, which is nearly 200-times larger than that of NiFe double layered hydroxide. Furthermore, tannic acid in TANF can be electrochemically extracted under anodic potential, leaving the inorganic composite NixFe1-xOyHz as the OER-active species. This work may provide a guide to probing the electrochemical transformation and investigating the reactive species of other metal-organic complexes as heterogeneous electrocatalysts.
机译:氧气进化反应(oer)是许多能量转换和储存技术的重要半反应。 然而,具有高质量活性和快速动力学的低成本易于准备的OER电催化剂的开发仍然具有挑战性。 在此,我们将单宁 - NiFe(TANF)复合膜对碳纤维纸(CP)作为高效oer电催化剂的沉积沉积。 TANF提供快速的OER反应动力学,具有28 MV DEC(-1)的非常小的TAFEL斜率。 Tanf的质量活性在300 mV的过电位下达到9.17×10(3)效效率,比NiFe双层氢氧化物的过电位达到近200倍。 此外,TANF中的鞣酸酸可以在阳极电位下电化学提取,使无机复合材料NIXFE1-XOYHZ作为oer-活性物种。 该作品可以提供探测电化学转化和研究其它金属 - 有机络合物的反应性物种作为异质电催化剂的导向装置。

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