孙宏滨

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东北大学理学院化学系教授、博士生导师,研究领域包括电化学储能、氢能、催化化学、精细化学品合成工艺、复合纳米材料、水处理等。主持国家重点研发计划课题、国家自然科学基金等多项国家级、省部级科研项目,以及多项横向项目。在Nat. Commun., Angew. Chem.,Adv. Funct. Mater.等国内外知名期刊发表论文130余篇,授...

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Ultrathin defect-rich nanosheets of NiFe-MOF with high specific capacitance and stability for supercapacitor

发布时间:2024-01-26  点击次数:

第一作者:Wenyu Dong 

通讯作者:Junli Xu

合写作者:Zhaoshun Liu, Hongbin Sun, Zhongning Shi

发表刊物:Materials Today Chemistry

卷号:36

影响因子:6.7

DOI码:10.1016/j.mtchem.2024.101938

所属单位:Department of Chemistry, Tsinghua University

教研室:物理化学

刊物所在地:ENGLAND

摘要:Ni-MOF shows high specific capacitance and rate capability performance as supercapacitor cathode, but it still exhibits poor intrinsic conductivity and cycle stability. Herein, we explore a bind free structural stabilized NiFe-MOF on nickel foam via one-pot solvothermal method for high performance supercapacitor. Various characterization results reveal that the prepared NiFe-MOF is composed of defective ultrathin nanosheets. The incorporation of Fe ions nodes can not only enhance the Ni-MOF cycle stability, but also increase the specific capacitance attributed to the formation of defects. The optimized NiFe-MOF exhibits an ultra-high specific area capacitance (15.6 F cm−2 at 2 mA cm−2) with excellent cycle stability (86.3 % cycle retention rate in 5000 cycles at 50 mA cm−2) in 1 mol L−1 KOH. The asymmetric supercapacitor (ASC) device constructed by NiFe-MOF/NF cathode and activated carbon (AC) anode achieves a high energy density of 0.75 mWh cm−2 and a power density of 8.0 mW cm−2. Our work provides an important strategy for the designing of high-performance energy storage material.

论文编号:WOS:001172535900001

学科门类:理学

一级学科:化学

页面范围:101938

ISSN号:2468-5194

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