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题名

Construction of NiCo-Layered Double Hydroxide Microspheres from Ni-MOFs for High-Performance Asymmetric Supercapacitors

作者
通讯作者Xu, Zong-Xiang; Wang, Fei
发表日期
2020-07-27
DOI
发表期刊
ISSN
2574-0962
卷号3期号:7页码:6633-6643
摘要

Layered double hydroxide (LDH) materials, especially metal-organic framework (MOF)-derived LDHs, have attracted much attention in electrochemical capacitor applications. However, the construction of porous three-dimensional microsphere architectures with controlled morphology is highly demanded for high-performance supercapacitor electrodes. Thus, a simple and effective strategy is recommended to design and fabricate the well-defined layered structure of LDHs with high performance. In this study, we demonstrate the synthesis of nickel-cobalt-LDHs (NiCo-LDHs) by in-situ etching of the Ni-MOF template at different hydrolysis times. Based on the different characterization results of the sample, a formation mechanism has been proposed in terms of the proton production rate and etching process. As a result of the disparity in the layered structure and the surface area, the electrochemical behavior of the NiCo-LDHs has been altered. The sample NiCo-LDH/10 (prepared after the 10 h reaction) exhibited a high surface area and the large size of LDH sheets on microspheres, which promoted the rapid electrolyte ion transportation for supercapacitors and displayed a maximum specific capacity of 1272 C g(-1) at 2 A g(-1). In addition, the assembled asymmetric supercapacitor delivered a remarkable energy density of 36.1 Wh kg(-1) with an outstanding cyclic stability (103.9% after 5000 cycles). This work establishes an effective strategy to synthesize a well-defined NiCo-LDH structure from the MOF template toward high-performance asymmetric supercapacitors, which could be extended to large-scale preparation of other transition metalbased LDHs from Ni-MOFs.

关键词
相关链接[来源记录]
收录类别
SCI ; EI
语种
英语
学校署名
第一 ; 通讯
资助项目
National Natural Science Foundation of China[21975116] ; Major Program of Guangdong Basic and Applied Research[2019B030302009] ; Shenzhen Science and Technology Innovation Committee[JCYJ20170412154426330] ; Guangdong Natural Science Funds for Distinguished Young Scholar[2016A030306042]
WOS研究方向
Chemistry ; Energy & Fuels ; Materials Science
WOS类目
Chemistry, Physical ; Energy & Fuels ; Materials Science, Multidisciplinary
WOS记录号
WOS:000557375200069
出版者
EI入藏号
20203809209928
EI主题词
Electrolytes ; Etching ; Transition metals ; Hydrolysis ; Metal-Organic Frameworks ; Microspheres ; Morphology
EI分类号
Metallurgy and Metallography:531 ; Metallurgy:531.1 ; Electric Batteries and Fuel Cells:702 ; Electric Components:704.1 ; Chemical Reactions:802.2 ; Chemical Agents and Basic Industrial Chemicals:803 ; Chemical Products Generally:804 ; Organic Compounds:804.1 ; Physical Properties of Gases, Liquids and Solids:931.2 ; Materials Science:951
来源库
Web of Science
引用统计
被引频次[WOS]:205
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/187784
专题理学院_化学系
前沿与交叉科学研究院
工学院_深港微电子学院
作者单位
1.Southern Univ Sci & Technol, Dept Chem, Shenzhen 518055, Peoples R China;
2.Southern Univ Sci & Technol, Sch Microelect, Shenzhen 518055, Peoples R China;
3.Minist Educ, Engn Res Ctr Integrated Circuits Next Generat Com, Shenzhen 518055, Peoples R China;
4.Southern Univ Sci & Technol, SUSTech Acad Adv Interdisciplinary Studies, Sch Microelect, Shenzhen 518055, Peoples R China
第一作者单位化学系;  深港微电子学院;  前沿与交叉科学研究院
通讯作者单位化学系;  深港微电子学院
第一作者的第一单位化学系
推荐引用方式
GB/T 7714
Ramachandran, Rajendran,Lan, Yangchun,Xu, Zong-Xiang,et al. Construction of NiCo-Layered Double Hydroxide Microspheres from Ni-MOFs for High-Performance Asymmetric Supercapacitors[J]. ACS Applied Energy Materials,2020,3(7):6633-6643.
APA
Ramachandran, Rajendran,Lan, Yangchun,Xu, Zong-Xiang,&Wang, Fei.(2020).Construction of NiCo-Layered Double Hydroxide Microspheres from Ni-MOFs for High-Performance Asymmetric Supercapacitors.ACS Applied Energy Materials,3(7),6633-6643.
MLA
Ramachandran, Rajendran,et al."Construction of NiCo-Layered Double Hydroxide Microspheres from Ni-MOFs for High-Performance Asymmetric Supercapacitors".ACS Applied Energy Materials 3.7(2020):6633-6643.
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