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Morphological effect on electrochemical performance of nanostructural CrN

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摘要 Size and morphology are critical factors in determining the electrochemical performance of the supercapacitor materials,due to the manifestation of the nanosize effect.Herein,different nanostructures of the CrN material are prepared by the combination of a thermal-nitridation process and a template technique.High-temperature nitridation could not only transform the hexagonal Cr_(2)O_(3)into cubic CrN,but also keep the template morphology barely unchanged.The obtained CrN nanostructures,including(i)hierarchical microspheres assembled by nanoparticles,(ii)microlayers,and(iii)nanoparticles,are studied for the electrochemical supercapacitor.The CrN microspheres show the best specific capacitance(213.2 F/g),cyclic stability(capacitance retention rate of 96%after 5000 cycles in 1-mol/L KOH solution),high energy density(28.9 Wh/kg),and power density(443.4 W/kg),comparing with the other two nanostructures.Based on the impedance spectroscopy and nitrogen adsorption analysis,it is revealed that the enhancement arised mainly from a high-conductance and specific surface area of CrN microspheres.This work presents a general strategy of fabricating controllable CrN nanostructures to achieve the enhanced supercapacitor performance.
作者 熊政伟 安雪梅 刘倩 朱家艺 张小强 郝辰春 羊强 高志鹏 张盟 Zhengwei Xiong;Xuemei An;Qian Liu;Jiayi Zhu;Xiaoqiang Zhang;Chenchun Hao;Qiang Yang;Zhipeng Gao;Meng Zhang(Joint Laboratory for Extreme Conditions Matter Properties,Southwest University of Science and Technology,Mianyang 621010,China;Institute of Electronic Engineering,China Academy of Engineering Physics(CAEP),Mianyang 621900,China;Institute of Fluid Physics,China Academy of Engineering Physics,Mianyang 621900,China;Affiliated Hospital,Chengdu University of Traditional Chinese Medicine,Chengdu 611137,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第12期625-631,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.11904299,U1930124,and 11804312) China Academy of Engineering Physics(CAEP)Foundation(Grant No.2018AB02)。
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