题名 | A new cyclic carbonate enables high power/ low temperature lithium-ion batteries |
作者 | |
通讯作者 | Deng,Yonghong |
发表日期 | 2021-11-24
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DOI | |
发表期刊 | |
ISSN | 2405-8297
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EISSN | 2405-8297
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卷号 | 45页码:14-23 |
摘要 | The modern lithium-ion battery (LIB) configuration was enabled by the “magic chemistry” between ethylene carbonate (EC) and graphitic carbon anode. Despite the constant changes of cathode chemistries with improved energy densities, EC-graphite combination remained static during the last three decades. While the interphase generated by EC protects the fragile graphitic structure, the intrinsic disadvantages of EC (high viscosity, high melting point, excessive interphase growth) lead to mediocre power density and poor performances of LIB at sub-zero temperatures, where lithium depositions form upon charging. Such performance compromises arise from the fundamental dilemma between requiring effective interphase protection and high impedance from excessive growth of interphase. In this work, we designed and synthesized a “double EC” molecule as electrolyte additive to resolve the above dilemma. Erythritol bis(carbonate) (EBC) possesses lower LUMO energy level than EC and hence tends to decompose prior to EC reduction, but its weak solvation toward Li restricts the extent of its reduction, thus minimizing the interphase thickness and the corresponding impedances. Electrolytes containing EBC enables both the charging and discharging of ampere-size LIB pouch cells at sub-zero temperatures from 0 to -20℃, demonstrating that the key approach to improve low temperature performances lies in how to tailor interphasial chemistry rather than the bulk electrolyte composition. |
关键词 | |
相关链接 | [Scopus记录] |
收录类别 | |
语种 | 英语
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学校署名 | 通讯
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资助项目 | Key-Area Research and Development Program of Guangdong Province[2020B090919001]
; National Natural Science Foundation of China[22078144,21802045]
; Assistant Secretary for Energy Efficiency and Renewable Energy, Vehicle Technology Office of the U.S. DOE through Applied Battery Research for Transportation (ABRT) program[DE-SC0012704]
; DOE Office of Science by Brookhaven National Laboratory[DE-SC0012704]
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WOS研究方向 | Chemistry
; Science & Technology - Other Topics
; Materials Science
|
WOS类目 | Chemistry, Physical
; Nanoscience & Nanotechnology
; Materials Science, Multidisciplinary
|
WOS记录号 | WOS:000820166400002
|
出版者 | |
EI入藏号 | 20214911283680
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EI主题词 | Carbonation
; Charging (batteries)
; Electrodes
; Electrolytes
; Ethylene
; Ions
; Synthesis (chemical)
; Temperature
|
EI分类号 | Thermodynamics:641.1
; Electric Batteries and Fuel Cells:702
; Secondary Batteries:702.1.2
; Chemical Reactions:802.2
; Chemical Agents and Basic Industrial Chemicals:803
; Chemical Products Generally:804
; Organic Compounds:804.1
|
Scopus记录号 | 2-s2.0-85120494335
|
来源库 | Scopus
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引用统计 |
被引频次[WOS]:42
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成果类型 | 期刊论文 |
条目标识符 | http://sustech.caswiz.com/handle/2SGJ60CL/257843 |
专题 | 工学院_材料科学与工程系 |
作者单位 | 1.Shenzhen CAPCHEM Technology Co. Ltd.,Shenzhen,Shabo Tongfuyu Industry Zone, Pingshan District,518118,China 2.Department of Materials Science and Engineering,Southern University of Science and Technology,Shenzhen,518055,China 3.Institute of Fuel Cells,School of Mechanical Engineering,Shanghai Jiao Tong University,200240,China 4.Department of Chemical and Materials Engineering,University of Alberta,Edmonton,T6G 1H9,Canada 5.Chemistry Division,Brookhaven National Laboratory,Upton,11973,United States 6.Materials Measurement Science Division,Material Measurement Laboratory,National Institute of Standards and Technology,Gaithersburg,20899,United States |
第一作者单位 | 材料科学与工程系 |
通讯作者单位 | 材料科学与工程系 |
推荐引用方式 GB/T 7714 |
Qian,Yunxian,Chu,Yanli,Zheng,Zhongtian,et al. A new cyclic carbonate enables high power/ low temperature lithium-ion batteries[J]. Energy Storage Materials,2021,45:14-23.
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APA |
Qian,Yunxian.,Chu,Yanli.,Zheng,Zhongtian.,Shadike,Zulipiya.,Han,Bing.,...&Deng,Yonghong.(2021).A new cyclic carbonate enables high power/ low temperature lithium-ion batteries.Energy Storage Materials,45,14-23.
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MLA |
Qian,Yunxian,et al."A new cyclic carbonate enables high power/ low temperature lithium-ion batteries".Energy Storage Materials 45(2021):14-23.
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条目包含的文件 | ||||||
文件名称/大小 | 文献类型 | 版本类型 | 开放类型 | 使用许可 | 操作 | |
2022-ESM-Qian.pdf(7179KB) | -- | -- | 限制开放 | -- |
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