4.7 Article

Gel Electrolyte Comprising Solvate Ionic Liquid and Methyl Cellulose

期刊

ACS APPLIED ENERGY MATERIALS
卷 3, 期 1, 页码 279-289

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsaem.9b01515

关键词

solvate ionic liquid; polymer gel electrolytes; iongels; lithium metal batteries; methyl cellulose

资金

  1. NSF [DMR 120722, CBET 1437814]

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Self-standing, high conductivity solid iongel electrolytes with good thermal stability (T-d similar to 200 degrees C), mechanical properties, and an anodic stability up to 5 V were prepared using the solvate ionic liquid [G(4)Li](+)[TFSI](-) in methyl cellulose (MC) with 90 wt % liquid. The excellent combination of high room temperature conductivity (sigma > 10(-4)) and storage modulus (E' similar to 60 MPa) is due to the semicrystalline fibrillar network formed by the MC. The high anodic stability of 5 V for the iongel is attributed to the known 4.5 V stability of the [G(4)Li](+) [TFSI](-) and the -OH groups on MC, which hydrogen bond with any free G(4) not in the [G(4)Li](+)[TFSI](-) complex, so that they are unavailable for oxidation. Li-0/iongel/Li-0 plating/stripping at low current densities is stable with low polarization, but at high current densities the polarization and cell impedance increase, which is due to mosaic lithium plating. Coin cells of Li-0/iongel/LiFePO4 could be cycled at C/2 (1C = 170 mA h/g) for at least 100 cycles with 98-99% Coulombic efficiency and capacities of 125 mA h/g, comparable to that of the pure liquid [G(4)Li](+)[TFSI](-) cells.

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