发明公开
EP3157080A1 NITROGEN-DOPED GRAPHENE COATED NANO-SULFUR ANODE COMPOSITE MATERIAL, AND PREPARATION METHOD AND APPLICATION THEREOF
审中-公开
HANSTELSTOVERDOTIERTER GRAPHENBESCHICHTETER NANOSCHWEFELANVERVERVERBUNDSTOFF,HERSTELLUNGSVERFAHREN UND ANWENDUNG DAVON
- 专利标题: NITROGEN-DOPED GRAPHENE COATED NANO-SULFUR ANODE COMPOSITE MATERIAL, AND PREPARATION METHOD AND APPLICATION THEREOF
- 专利标题(中): HANSTELSTOVERDOTIERTER GRAPHENBESCHICHTETER NANOSCHWEFELANVERVERVERBUNDSTOFF,HERSTELLUNGSVERFAHREN UND ANWENDUNG DAVON
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申请号: EP15807123.3申请日: 2015-06-05
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公开(公告)号: EP3157080A1公开(公告)日: 2017-04-19
- 发明人: ZHANG, Yuegang , QIU, Yongcai , LI, Wanfei , LI, Guizhu , HOU, Yuan , LIU, Meinan , ZHOU, Lisha , YE, Fangmin , LI, Hongfei
- 申请人: Suzhou Institute of Nano-tech and Nano-bionics (SINANO) Chinese Academy of Sciences
- 申请人地址: No. 398 Ruoshui Road SIP Suzhou Suzhou, Jiangsu 215125 CN
- 专利权人: Suzhou Institute of Nano-tech and Nano-bionics (SINANO) Chinese Academy of Sciences
- 当前专利权人: Suzhou Institute of Nano-tech and Nano-bionics (SINANO) Chinese Academy of Sciences
- 当前专利权人地址: No. 398 Ruoshui Road SIP Suzhou Suzhou, Jiangsu 215125 CN
- 代理机构: Angerhausen, Christoph
- 优先权: CN201410256653 20140611
- 国际公布: WO2015188726 20151217
- 主分类号: H01M4/36
- IPC分类号: H01M4/36
摘要:
The invention provides a nitrogen-doped graphene coated nano sulfur positive electrode composite material, a preparation method, and an application thereof. The composite material includes: an effective three-dimensional conductive network formed by overlapping of nitrogen-doped graphenes, and nano sulfur particles coated by nitrogen doped graphene layers evenly. The preparation method includes: dispersing nitrogen-doped graphenes in a liquid-phase reaction system including at least sulfur source and acid,and depositing nano sulfur particles by an in-situ chemical reaction of the sulfur source and the acid, thereby preparing the positive electrode composite material. The positive electrode composite material of the invention has a high conductivity, a high sulfur utilization rate, and a high rate, thereby restraining the dissolution and shuttle effect in the lithium sulfur batteries, and enhancing the cyclic performance of the batteries.
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