首页> 外文期刊>Angewandte Chemie >A Versatile Iron-Tannin-Framework Ink Coating Strategy to Fabricate Biomass-Derived Iron Carbide/Fe-N-Carbon Catalysts for Efficient Oxygen Reduction
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A Versatile Iron-Tannin-Framework Ink Coating Strategy to Fabricate Biomass-Derived Iron Carbide/Fe-N-Carbon Catalysts for Efficient Oxygen Reduction

机译:一种多功能的铁单宁 - 框架墨水涂料策略,用于制造生物质衍生的铁碳化铁/ Fe-N-碳催化剂,用于有效的氧气

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摘要

The conversion of biomass into valuable carbon composites as efficient non-precious metal oxygen-reduction electrocatalysts is attractive for the development of commercially viable polymer electrolyte membrane fuel-cell technology. Herein, a versatile iron-tannin-framework ink coating strategy is developed to fabricate cellulose-derived Fe3C/Fe-NC catalysts using commercial filter paper, tissue, or cotton as a carbon source, an iron-tannin framework as an iron source, and dicyandiamide as a nitrogen source. The oxygen reduction performance of the resultant Fe3C/Fe-N-C catalysts shows a high onset potential (i.e. 0.98V vs the reversible hydrogen electrode (RHE)), and large kinetic current density normalized to both geometric electrode area and mass of catalysts (6.4 mAcm(-2) and 32 mAmg(-1) at 0.80 V vs RHE) in alkaline condition. This method can even be used to prepare efficient catalysts using waste carbon sources, such as used polyurethane foam.
机译:生物质转化为有价值的碳复合材料,作为有效的非贵金属氧还原电催化剂对于开发市售的聚合物电解质膜燃料电池技术具有吸引力。 在此,开发了一种多功能的铁甘蛋白框架墨水涂料策略,用于使用商业滤纸,组织或棉花作为碳源,作为铁源的铁单宁框架制造纤维素衍生的Fe3C / Fe-NC催化剂,以及 双氰胺作为氮源。 所得Fe3C / Fe-NC催化剂的氧还原性能显示出高发起电位(即0.98V VS可逆氢电极(RHE)),以及常规的大型动力电流密度与几何电极面积和催化剂的质量(6.4 Macm (-2)和32 mamg(-1)在碱性条件下为0.80 V vs rhe)。 该方法甚至可以使用使用废碳源制备有效催化剂,例如使用的聚氨酯泡沫。

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