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氮掺杂碳纤维负载镍钴硒化物的制备及其电催化析氢性能
引用本文:于静,张婷,刘琦,刘婧媛,王君.氮掺杂碳纤维负载镍钴硒化物的制备及其电催化析氢性能[J].无机化学学报,2022,38(1):63-72.
作者姓名:于静  张婷  刘琦  刘婧媛  王君
作者单位:哈尔滨工程大学材料科学与化学工程学院
基金项目:国家自然科学基金(No.51901055);黑龙江省自然科学基金(No.LH2019E025)资助。
摘    要:以静电纺丝制备的纤维为前驱体,通过煅烧、硒化处理等工艺合成了负载双金属硒化物纳米粒子的氮掺杂碳纤维(NCF)材料((Ni,Co)Se2/NCF),并对其进行了一系列相关的表征,研究了其在酸性和碱性条件下的析氢性能.(Ni,Co)Se2纳米粒子被锚定于NCF中,有效地阻止了纳米粒子的聚集,提供了更多的催化活性位点.电催化...

关 键 词:电催化  静电纺丝  碳纤维  双金属效应  析氢反应
收稿时间:2021/7/5 0:00:00
修稿时间:2021/11/16 0:00:00

Preparation of Nitrogen-Doped Carbon Fiber Supported Nickel-Cobalt Selenides for Electrocatalytic Hydrogen Evolution Performance
YU Jing,ZHANG Ting,LIU Qi,LIU Jing-Yuan,WANG Jun.Preparation of Nitrogen-Doped Carbon Fiber Supported Nickel-Cobalt Selenides for Electrocatalytic Hydrogen Evolution Performance[J].Chinese Journal of Inorganic Chemistry,2022,38(1):63-72.
Authors:YU Jing  ZHANG Ting  LIU Qi  LIU Jing-Yuan  WANG Jun
Institution:(College of Materials Science and Chemical Engineering,Harbin Engineering University,Harbin 150001,China)
Abstract:Nitrogen-doped carbon fiber (NCF) loaded bimetal selenide nanoparticle material ((Ni,Co)Se2/NCF) was synthesized by calcination and selenium treatment using electrospun fibers as the precursor. A series of related characterization was carried out, and the hydrogen evolution properties of the materials were studied under acidic and alkaline conditions. (Ni,Co)Se2 nanoparticles were anchored in NCF, which effectively prevents the aggregation of nanoparticles and provides more catalytic active sites. The electrocatalytic hydrogen evolution test results showed that in 1 mol·L-1 KOH solution, the overpotential of (Ni,Co)Se2/NCF was 123.3 mV at the current density of 10 mA·cm-2, and the Tafel slope was 144.0 mV·dec-1. In 0.5 mol·L-1 H2SO4 solution, the overpotential of hydrogen evolution required for (Ni,Co)Se2/NCF to reach the current density of 10 mA·cm-2 was 95.5 mV, and the Tafel slope was 115.2 mV·dec-1, indicating excellent electrocatalytic hydrogen evolution performance.
Keywords:electrocatalysis  electrospinning  carbon fiber  bimetallic synergy  hydrogen evolution reaction
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