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Solid-State Li-Ion Batteries Operating at Room Temperature Using New Borohydride Argyrodite Electrolytes

机译:使用新的硼氢化氢芳粒电解质在室温下操作的固态锂离子电池

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摘要

Using a new class of (BH4)− substituted argyrodite Li6PS5Z0.83(BH4)0.17, (Z = Cl, I) solid electrolyte, Li-metal solid-state batteries operating at room temperature have been developed. The cells were made by combining the modified argyrodite with an In-Li anode and two types of cathode: an oxide, LixMO2 (M = ⅓ Ni, ⅓ Mn, ⅓ Co; so called NMC) and a titanium disulfide, TiS2. The performance of the cells was evaluated through galvanostatic cycling and Alternating Current AC electrochemical impedance measurements. Reversible capacities were observed for both cathodes for at least tens of cycles. However, the high-voltage oxide cathode cell shows lower reversible capacity and larger fading upon cycling than the sulfide one. The AC impedance measurements revealed an increasing interfacial resistance at the cathode side for the oxide cathode inducing the capacity fading. This resistance was attributed to the intrinsic poor conductivity of NMC and interfacial reactions between the oxide material and the argyrodite electrolyte. On the contrary, the low interfacial resistance of the TiS2 cell during cycling evidences a better chemical compatibility between this active material and substituted argyrodites, allowing full cycling of the cathode material, 240 mAhg−1, for at least 35 cycles with a coulombic efficiency above 97%.
机译:使用新的(BH4) - 取代的argyrodite Li6PS5Z0.83(BH4)0.17,(Z = Cl,I)固体电解质,已经开发出在室温下操作的Li-Malid固态电池。通过将改性的argyrodite与In-Li阳极和两种类型的阴极组合和两种类型的阴极:氧化物,LixmO 2(M =⅓Ni,⅓Mn,Co;所谓的NMC)和二硫化钛,TIS2来制备细胞。通过GALVANOTATIC循环和交流式交流电化学阻抗测量来评估细胞的性能。对于至少几十次循环的阴极观察到可逆容量。然而,高压氧化物阴极细胞显示比硫化物循环在循环时较低的可逆容量和更大的褪色。 AC阻抗测量显示在诱导容量衰落的氧化物阴极处的阴极侧的界面抗性增加。这种阻力归因于NMC的内在导电性和氧化物材料和宇宙沸石电解质之间的界面反应。相反,循环期间TIS2细胞的低界面抗性证明该活性材料和取代的argyrodites之间的更好的化学相容性,允许通过上方的库仑效率全循环240mAhg-1,以上的库仑效率为至少35个周期97%。

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