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Slurry-Fabricable Li~+-Conductive Polymeric Binders for Practical All-Solid-State Lithium-Ion Batteries Enabled by Solvate Ionic Liquids

机译:用于实际全固态锂离子电池的浆料可制造的Li + - 导电聚合物粘合剂,由溶剂化物离子液体使能

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For mass production of all-solid-state lithium-ion batteries (ASLBs) employing highly Li+ conductive and mechanically sinterable sulfide solid electrolytes (SEs), the wet-slurry process is imperative. Unfortunately, the poor chemical stability of sulfide SEs severely restrict available candidates for solvents and in turn polymeric binders. Moreover, the binders interrupt Li+-ionic contacts at interfaces, resulting in the below par electrochemical performance. In this work, a new scalable slurry fabrication protocol for sheet-type ASLB electrodes made of Li+-conductive polymeric binders is reported. The use of intermediatepolarity solvent (e.g., dibromomethane) for the slurry allows for accommodating Li6PS5Cl and solvate-ionic-liquid-based polymeric binders (NBR-Li(G3) TFSI, NBR: nitrile-butadiene rubber, G3: triethylene glycol dimethyl ether, LiTFSI: lithium bis(trifluoromethanesulfonyl) imide) together without suffering from undesirable side reactions or phase separation. The LiNi0.6Co0.2Mn0.2O2 and Li4Ti5O12 electrodes employing NBR-Li(G3) TFSI show high capacities of 174 and 160 mA h g(-1) at 30 degrees C, respectively, which are far superior to those using conventional NBR (144 and 76 mA h g(-1)). Moreover, high areal capacity of 7.4 mA h cm(-2) is highlighted for the LiNi0.7Co0.15Mn0.15O2 electrodes with ultrahigh mass loading of 45 mg cm(-2). The facilitated Li+-ionic contacts at interfaces paved by NBR-Li(G3) TFSI are evidenced by the complementary analysis from electrochemical and 7Li nuclear magnetic resonance measurements.
机译:对于批量生产的全固态锂离子电池(ASLBS),采用高+导电和机械烧结硫化硫化物固体电解质(SES),湿淤浆工艺势在必行。不幸的是,硫化物SES的差的化学稳定性严重限制了可用候选者的溶剂和转弯聚合物粘合剂。此外,粘合剂在界面处中断Li +阴离子触点,导致以下探测电化学性能。在这项工作中,报道了一种用于由Li + - 导电聚合物粘合剂制成的片材型ASLB电极的新可伸缩浆料制造方案。用于浆料的中间倍异性溶剂(例如,二溴甲烷)允许容纳Li6PS5Cl和溶剂化物 - 离子 - 液体基聚合物粘合剂(NBR-Li(G3)TFSI,NBR:丁腈 - 丁二烯橡胶,G3:三乙二醇二甲醚, LITFSI:二锂(三氟甲磺酰基)酰亚胺)在不患有不希望的副反应或相分离的情况下在一起。采用NBR-Li(G3)TFSI的LINI0.6CO0.2MN0.2O2和LI4TI5O12电极分别在30摄氏度下显示出174和160mA HG(-1)的高容量,其远远优于使用常规NBR(144和76 ma hg(-1))。此外,对于LINI0.7CO0.15MN0.15O2电极,高度的高度容量为7.4 mA H CM(-2),具有45mg cm(-2)的超高质量负荷。通过电化学和7LI核磁共振测量的互补分析,通过了由NBR-Li(G3)TFSI铺设的界面的促进的Li +离子触点。

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