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MOF-derived Cuanoporous carbon composite and its application for electro-catalysis of hydrogen evolution reaction

机译:MOF衍生的Cu /纳米孔碳复合材料及其在生氢反应电催化中的应用

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摘要

In this work, metal-organic framework Cu-3(BTC)(2) [BTC = 1,3,5-benzenetricarboxylate] (commonly known as MOF-199 or HKUST-1), is used as porous template for preparation of a Cuanoporous carbon composite. The MOF-derived Cuanoporous carbon composite (Cu/NPC composite) is synthesized by direct carbonization of the MOF-199 without any carbon precursor additive. The physical characterization of the solid catalyst is achieved by using a variety of different techniques, including XRD (X-ray powder diffraction), scanning electron microscopy, thermo-gravimetric analysis, and nitrogen physisorption measurements. The electrochemical results have shown that the Cu/NPC composite modified glassy carbon electrode (Cu/NPC/GCE) as a non-platinum electrocatalyst exhibited favorable catalytic activity for hydrogen evolution reaction, in spite of high resistance to faradic process. This behavior can be attributed to existence of Cu metal confirmed by XRD and/or high effective pore surface area (1025 m(2) g(-1)) in the Cu/NPC composite. The electron transfer coefficient and exchange current density for the Cu/NPC/GCE is calculated by Tafel plot at about 0.34 and 1.2 x 10(-3) mAcm(-2), respectively. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,金属有机骨架Cu-3(BTC)(2)[BTC = 1,3,5-苯三羧酸盐](通常称为MOF-199或HKUST-1)用作制备模板的多孔模板。铜/纳米孔碳复合材料。 MOF衍生的Cu /纳米孔碳复合材料(Cu / NPC复合材料)是通过将MOF-199直接碳化而无需任何碳前驱体添加剂而合成的。固体催化剂的物理表征是通过使用各种不同的技术实现的,包括XRD(X射线粉末衍射),扫描电子显微镜,热重分析和氮物理吸附测量。电化学结果表明,Cu / NPC复合改性玻璃碳电极(Cu / NPC / GCE)作为非铂电催化剂,尽管对法拉第过程有很高的抵抗力,但仍表现出良好的催化析氢活性。此行为可归因于XRD证实的铜金属的存在和/或Cu / NPC复合材料中的有效孔表面积(1025 m(2)g(-1))高。 Cu / NPC / GCE的电子传递系数和交换电流密度分别通过Tafel图计算得出,分别约为0.34和1.2 x 10(-3)mAcm(-2)。 (C)2015 Elsevier Ltd.保留所有权利。

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