Research progress in 3D network structured water-soluble binders for lithium-ion batteries
Silicon has been a pivotal material for the next generation lithium-ion batteries, owing to its superior theoretical capacity (4200 mAh·g<sup>-1</sup>). However, the huge volume change of silicon during the process of lithiation/delithiation will lead to the instability of silicon-based...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | zho |
Published: |
Journal of Materials Engineering
2021-06-01
|
Series: | Journal of Materials Engineering |
Subjects: | |
Online Access: | http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.001112 |
id |
doaj-ce0bb22fc9bc4e9a9af34b7242fafe03 |
---|---|
record_format |
Article |
spelling |
doaj-ce0bb22fc9bc4e9a9af34b7242fafe032021-08-18T02:42:38ZzhoJournal of Materials EngineeringJournal of Materials Engineering1001-43811001-43812021-06-01496445410.11868/j.issn.1001-4381.2019.00111220210605Research progress in 3D network structured water-soluble binders for lithium-ion batteriesZHANG Jian-hua0ZHANG Wei1YU Zhang-long2SHI Bi-meng3YANG Juan-yu4National Power Battery Innovation Center, GRINM Group Corporation Limited, Beijing 100088, ChinaNational Power Battery Innovation Center, GRINM Group Corporation Limited, Beijing 100088, ChinaNational Power Battery Innovation Center, GRINM Group Corporation Limited, Beijing 100088, ChinaNational Power Battery Innovation Center, GRINM Group Corporation Limited, Beijing 100088, ChinaNational Power Battery Innovation Center, GRINM Group Corporation Limited, Beijing 100088, ChinaSilicon has been a pivotal material for the next generation lithium-ion batteries, owing to its superior theoretical capacity (4200 mAh·g<sup>-1</sup>). However, the huge volume change of silicon during the process of lithiation/delithiation will lead to the instability of silicon-based anode. As a main composition of electrode, the binder plays a critical role in connecting the electrode components together and maintaining the stability of electrode, the use of an appropriate binder is essential to improve the cycling stability of silicon-based anode. Water-soluble binders which have abundant functional groups have received extensive attention due to their excellent performance in improving the electrochemical performance of silicon-based anodes. In this paper, the research progress of water-soluble binders used in silicon-based anode was reviewed. First, the properties of one-dimensional linear binders were summarized. On this basis, the research progress of composite binders with three-dimensional (3D) network structure was mainly introduced. The structure and properties of different 3D network binders were systematically analyzed. Finally, the preferred structure and properties of the water-soluble binders for silicon-based anode were proposed, and a train of thought for water-soluble binders’ choice and design was provided.http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.001112lithium-ion batterysilicon-based anodewater-soluble binder3d network binder |
collection |
DOAJ |
language |
zho |
format |
Article |
sources |
DOAJ |
author |
ZHANG Jian-hua ZHANG Wei YU Zhang-long SHI Bi-meng YANG Juan-yu |
spellingShingle |
ZHANG Jian-hua ZHANG Wei YU Zhang-long SHI Bi-meng YANG Juan-yu Research progress in 3D network structured water-soluble binders for lithium-ion batteries Journal of Materials Engineering lithium-ion battery silicon-based anode water-soluble binder 3d network binder |
author_facet |
ZHANG Jian-hua ZHANG Wei YU Zhang-long SHI Bi-meng YANG Juan-yu |
author_sort |
ZHANG Jian-hua |
title |
Research progress in 3D network structured water-soluble binders for lithium-ion batteries |
title_short |
Research progress in 3D network structured water-soluble binders for lithium-ion batteries |
title_full |
Research progress in 3D network structured water-soluble binders for lithium-ion batteries |
title_fullStr |
Research progress in 3D network structured water-soluble binders for lithium-ion batteries |
title_full_unstemmed |
Research progress in 3D network structured water-soluble binders for lithium-ion batteries |
title_sort |
research progress in 3d network structured water-soluble binders for lithium-ion batteries |
publisher |
Journal of Materials Engineering |
series |
Journal of Materials Engineering |
issn |
1001-4381 1001-4381 |
publishDate |
2021-06-01 |
description |
Silicon has been a pivotal material for the next generation lithium-ion batteries, owing to its superior theoretical capacity (4200 mAh·g<sup>-1</sup>). However, the huge volume change of silicon during the process of lithiation/delithiation will lead to the instability of silicon-based anode. As a main composition of electrode, the binder plays a critical role in connecting the electrode components together and maintaining the stability of electrode, the use of an appropriate binder is essential to improve the cycling stability of silicon-based anode. Water-soluble binders which have abundant functional groups have received extensive attention due to their excellent performance in improving the electrochemical performance of silicon-based anodes. In this paper, the research progress of water-soluble binders used in silicon-based anode was reviewed. First, the properties of one-dimensional linear binders were summarized. On this basis, the research progress of composite binders with three-dimensional (3D) network structure was mainly introduced. The structure and properties of different 3D network binders were systematically analyzed. Finally, the preferred structure and properties of the water-soluble binders for silicon-based anode were proposed, and a train of thought for water-soluble binders’ choice and design was provided. |
topic |
lithium-ion battery silicon-based anode water-soluble binder 3d network binder |
url |
http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.001112 |
work_keys_str_mv |
AT zhangjianhua researchprogressin3dnetworkstructuredwatersolublebindersforlithiumionbatteries AT zhangwei researchprogressin3dnetworkstructuredwatersolublebindersforlithiumionbatteries AT yuzhanglong researchprogressin3dnetworkstructuredwatersolublebindersforlithiumionbatteries AT shibimeng researchprogressin3dnetworkstructuredwatersolublebindersforlithiumionbatteries AT yangjuanyu researchprogressin3dnetworkstructuredwatersolublebindersforlithiumionbatteries |
_version_ |
1721203923201556480 |