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钱金杰

教师姓名:钱金杰
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办公地点:3C-213(国旗广场旁)
联系方式:13777766713
毕业院校:CAS,福建物质结构研究所
所属院系:化学与材料工程学院
学科:材料学    无机化学    
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论文成果
Chitosan hydrogel derived carbon foam with typical transition-metal catalysts for efficient water splitting
发布时间:2022-05-26    点击次数:

发表刊物:Carbon

项目来源:国家自然科学基金项目

关键字:Chitosan hydrogel; Carbon foam; Molybdenum carbide; Transition-metal carbonate hydroxides; Water splitting

摘要:Herein, we present a stepwise approach for constructing 3-dimensional porous carbon foam pretreated via glutaraldehyde cross-linking and decorated with highly dispersed molybdenum carbide (CF-Glu-Mo) or Co-doped FeNi carbonate hydroxide (CF-Glu-CoFeNi), which is structurally derived from the initial chitosan hydrogel. The as-prepared CF-Glu-Mo and CF-Glu-CoFeNi can act as mono-functional electrocatalysts for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER), respectively. In 1.0 M KOH, CF-Glu-Mo exhibits a small overpotential of 88 mV with a low Tafel slope of 56 mV dec−1 under the working condition of 10 mA cm−2 for HER, and CF-Glu-CoFeNi requires an overpotential of 290 mV for OER to reach a current density of 50 mA cm−2, accompanied by a low Tafel slope of 115 mV dec−1. In this case, these integrated electrodes derived from the robust interconnection between the electrocatalyst and the chitosan hydrogel derived carbon foam make the whole water decomposition behavior more direct and efficient, which is reasonably attributed to hierarchically porous nanostructures and intrinsically high conductivity. The full electrolyzer assembled with carbon cloth (CC) of CF-Glu-Mo/CC||CF-Glu-CoFeNi/CC can drive full alkaline water splitting by applying a voltage of 1.65 V at a catalytic current of 10 mA cm−2 for 24 h. Meanwhile, this work provides a feasible approach for the development of efficient water splitting electrocatalysts through the rational design and regulation of heterogeneous interfaces and nanostructures.

第一作者:钱金杰

通讯作者:钱金杰,黄少铭

卷号:177

字数:1

ISSN号:0008-6223

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发表时间:2021-02-24