...
首页> 外文期刊>Advanced energy materials >Tailoring Slurries Using Cosolvents and Li Salt Targeting Practical All-Solid-State Batteries Employing Sulfide Solid Electrolytes
【24h】

Tailoring Slurries Using Cosolvents and Li Salt Targeting Practical All-Solid-State Batteries Employing Sulfide Solid Electrolytes

机译:使用彩色塑造浆料和锂盐瞄准实用的全固态电池,采用硫化物固体电解质

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Polymeric binders that can undergo slurry fabrication and minimize the disruption of interfacial Li+ contact are imperative for sheet-type electrodes and solid electrolyte films in practical all-solid-state Li batteries (ASLBs). Although dry polymer electrolytes (DPEs) are a plausible alternative, their use is complicated by the severe reactivity of sulfide solid electrolytes and the need to dissolve Li salts. In this study, a new scalable fabrication protocol for a Li+-conductive DPE-type binder, nitrile-butadiene rubber (NBR)-LiTFSI, is reported. The less-polar dibromomethane and more-polar hexyl butyrate in cosolvents work synergistically to dissolve NBR and LiTFSI, while preserving Li6PS5Cl0.5Br0.5. It is found that the dispersion of NBR can be controlled by the fraction of the antisolvent (hexyl butyrate), which in turn affects the corresponding performance of the ASLBs. Sheet-type LiNi0.70Co0.15Mn0.15O2 electrodes tailored using NBR-LiTFSI outperform those prepared using the conventional insulating binder (NBR) in terms of capacity (163 vs 147 mA h g(-1)) and initial Coulombic efficiency (78.9 vs 70.4%), which is attributed to the facilitated interfacial Li+ transport, as confirmed by Li-6 nuclear magnetic resonance and electrochemical measurements. Moreover, NBR-LiTFSI is functional at 70 degrees C and in a graphite anode. Finally, the promising performance of pouch-type LiNi0.70Co0.15Mn0.15O2/graphite ASLBs is also demonstrated.
机译:可以进行浆料制造和最小化界面Li +接触的破坏的聚合物粘合剂在实际固态Li电池(ASLBS)中的片状电极和固体电解质膜的势在必行。虽然干燥聚合物电解质(DPE)是合理的替代方案,但它们的使用是通过硫化物固体电解质的严重反应性和溶解Li盐的需要复杂。在该研究中,报道了一种用于Li + - 导电DPE型粘合剂,丁腈丁二烯橡胶(NBR)-LitFSI的新可伸缩制造方案。在共溶剂中的较低极性二溴甲烷和更多极性己基丁酸盐协同溶解溶解NBR和LITFSI,同时保留Li6PS5Cl0.5br0.5。结果发现,NBR的分散可以通过抗溶剂(己基丁酸酯)的级分来控制,这反过来影响ASLBS的相应性能。用NBR-LITFSI定制的表型LINI0.70CO0.15MN0.15O2电极在容量方面使用NBR-LITFSI优于使用常规绝缘粘合剂(NBR)(163 VS 147 MA HG(-1))和初始库仑效率(78.9 VS 70.4 %),其归因于促进的界面Li +转运,如Li-6核磁共振和电化学测量所证实。此外,NBR-LITFSI在70摄氏度和石墨阳极处具有功能性。最后,还证明了袋型LINI0.70CO0.15MN0.15O2 /石墨ASLB的有希望的性能。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号