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题名

Concurrently Achieving High Discharged Energy Density and Efficiency in Composites by Introducing Ultralow Loadings of Core-Shell Structured Graphene@TiO2 Nanoboxes

作者
通讯作者Shi, Zhicheng; Wang, Huanlei; Gao, Zhe; Wang, Hong
发表日期
2022-06-01
DOI
发表期刊
ISSN
1944-8244
EISSN
1944-8252
卷号14页码:29292-29301
摘要
Polymer dielectrics have drawn tremendous attention worldwide due to their huge potential for pulsed power capacitors. Recent studies have demonstrated that linear/nonlinear layered composites, which can effectively balance energy density and efficiency, have huge potential for capacitive energy storage applications. However, further enhanced energy densities are strongly desired to meet the everincreasing demand for the miniaturization of electronic devices. Herein, a novel class of core-shell structured graphene@titanium dioxide nanoboxes is successfully synthesized and introduced into poly(vinylidene fluoride-hexafluoropropylene)-poly(ether imide) double-layer films. It is exciting to find that the introduction of merely 0.5 wt% nanoboxes results in a substantially enhanced energy density of 19.39 J/cm(3), which is over 2.6 times that of the film without nanoboxes (7.44 J/cm(3)). Meanwhile, a high breakdown strength of 655 kV/mm and a high efficiency of 83% are achieved. Furthermore, the nanocomposites also show excellent power densities and cycling stabilities. These composites with excellent comprehensive energy storage performances have huge potential for advanced pulsed power capacitors.
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
通讯
资助项目
Fundamental Research Funds for the Central Universities[202241004] ; Shandong Natural Science Foundation for Outstanding Young Scholars[ZR2021YQ39] ; National Natural Science Foundation of China[51773187,92066208]
WOS研究方向
Science & Technology - Other Topics ; Materials Science
WOS类目
Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary
WOS记录号
WOS:000820660400001
出版者
EI入藏号
20223012400099
EI主题词
Dielectric devices ; Energy storage ; Fluorine compounds ; Graphene ; High-k dielectric ; Nanocomposites ; Shells (structures)
EI分类号
Structural Members and Shapes:408.2 ; Energy Storage:525.7 ; Dielectric Materials:708.1 ; Nanotechnology:761 ; Chemical Products Generally:804 ; Inorganic Compounds:804.2 ; Solid State Physics:933
来源库
Web of Science
引用统计
被引频次[WOS]:20
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/353415
专题工学院_材料科学与工程系
作者单位
1.Ocean Univ China, Sch Mat Sci & Engn, Qingdao 266100, Peoples R China
2.Southern Univ Sci & Technol, Dept Mat Sci & Engn, Shenzhen 518055, Peoples R China
3.Southern Univ Sci & Technol, Shenzhen Engn Res Ctr Novel Elect Informat Mat, Shenzhen 518055, Peoples R China
4.Southern Univ Sci & Technol, Guangdong Prov Key Lab Funct Oxide Mat & Devices, Shenzhen 518055, Guangdong, Peoples R China
5.Chinese Acad Sci, Inst Coal Chem, State Key Lab Coal Convers, Taiyuan 030001, Peoples R China
6.Shanghai Maritime Univ, Inst Marine Mat Sci & Engn, Shanghai 201306, Peoples R China
第一作者单位材料科学与工程系;  南方科技大学
通讯作者单位材料科学与工程系;  南方科技大学
推荐引用方式
GB/T 7714
Sun, Liang,Shi, Zhicheng,Liang, Liang,et al. Concurrently Achieving High Discharged Energy Density and Efficiency in Composites by Introducing Ultralow Loadings of Core-Shell Structured Graphene@TiO2 Nanoboxes[J]. ACS Applied Materials & Interfaces,2022,14:29292-29301.
APA
Sun, Liang.,Shi, Zhicheng.,Liang, Liang.,Dong, Jiufeng.,Pan, Zizhao.,...&Wang, Hong.(2022).Concurrently Achieving High Discharged Energy Density and Efficiency in Composites by Introducing Ultralow Loadings of Core-Shell Structured Graphene@TiO2 Nanoboxes.ACS Applied Materials & Interfaces,14,29292-29301.
MLA
Sun, Liang,et al."Concurrently Achieving High Discharged Energy Density and Efficiency in Composites by Introducing Ultralow Loadings of Core-Shell Structured Graphene@TiO2 Nanoboxes".ACS Applied Materials & Interfaces 14(2022):29292-29301.
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