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安徽工程大学化学与环境工程学院,安徽省功能配合物材料化学与应用重点实验室,芜湖 241000
* 陶庭先,E-mail: tw3@ahpu.edu.cn
纸质出版日期:2023-10-20,
收稿日期:2023-02-19,
修回日期:2023-04-12,
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张弋林, 吴之传, 谢嘉欣, 卢晓韩, 丁振, 陶庭先. Ni3S2/偕胺肟化聚丙烯腈复合材料的制备及其析氢性能研究[J]. 高分子通报, 2023,36(10):1347-1355.
ZHANG Yi-lin, WU Zhi-chuan, XIE Jia-xin, LU Xiao-han, DING Zhen, TAO Ting-xian. Preparation of Ni3S2/Amidoximated Polyacrylonitrile Composites and Its Hydrogen Evolution Properties[J]. Polymer Bulletin, 2023,36(10):1347-1355.
张弋林, 吴之传, 谢嘉欣, 卢晓韩, 丁振, 陶庭先. Ni3S2/偕胺肟化聚丙烯腈复合材料的制备及其析氢性能研究[J]. 高分子通报, 2023,36(10):1347-1355. DOI: 10.14028/j.cnki.1003-3726.2023.10.011.
ZHANG Yi-lin, WU Zhi-chuan, XIE Jia-xin, LU Xiao-han, DING Zhen, TAO Ting-xian. Preparation of Ni3S2/Amidoximated Polyacrylonitrile Composites and Its Hydrogen Evolution Properties[J]. Polymer Bulletin, 2023,36(10):1347-1355. DOI: 10.14028/j.cnki.1003-3726.2023.10.011.
催化活性和循环稳定性是提升Ni
3
S
2
电催化剂析氢反应(HER)性能的关键因素。本文以氯化镍、硫脲、L-半胱氨酸和偕胺肟化聚丙烯腈高分子(AOCF)为原料,通过溶剂热法和配位负载法成功制备Ni
/偕胺肟化聚丙烯腈高分子(Ni
/AOCF)复合材料。结构和性能表征说明:Ni
通过Ni与AOCF 链上的—OH和—NH2 之间形成配位键,从而形成Ni
/AOCF复合材料。Ni
/AOCF复合材料在酸性介质中作为HER电催化剂表现出了良好的电催化性能和良好的长期耐久性,当电流密度为-30 mV/cm2 时,过电势为-233 mV,Tafel斜率为94.7 mV/dec,循环稳定性维持50 h以上。因此,Ni
/AOCF复合材料展现了较高析氢性能、低成本和稳定性良好等特性。
Catalytic activity and cycle stability are the critical factors in improving the performance of the hydrogen evolution reaction (HER) of Ni
electrocatalyst. In this study
Ni
/amine oxime polyacrylonitrile polymer (AOCF) composites were successfully prepared from nickel chloride
thiourea
L-cysteine
and AOCF by solvothermal and ligand loading methods. The results of structure and performance characterization show that Ni
forms a coordination bond between Ni and —OH and —NH
on the AOCF chain
resulting in Ni
/AOCF composites. As HER electrocatalysts in acidic media
/AOCF composites exhibit excellent electrocatalytic activity and good cycle stability
with an overpotential of -233 mV
a Tafel slope of 94.7 mV/dec
and cycling stability of up to 50 h at a current density of -30 mV/cm
. As a result
/AOCF composites show the characteristics of high hydrogen evolution performance
low cost
and good stability.
Ni3S2AOCF催化活性析氢性能电催化剂
Ni3S2AOCFCatalytic activityHydrogen evolution performanceElectrocatalyst
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