F. Honda, Shogo Taira, Shiori Suzuki, K. Shikinaka, Kengo Shigetomi, Y. Uraki
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引用次数: 0
摘要
摘要:用硬木醋酸木质素(AL)与聚乙二醇二缩水甘油酯醚化学交联制备的木质素基凝胶在水和有机溶剂中收缩,但在二元水溶液中膨胀。在本研究中,al基凝胶在含锂盐的有机溶剂,即液体电解质中也会膨胀。盐溶液的吸收量达到凝胶干重的五倍。在室温(25 ℃)下,在碳酸丙烯酯或碳酸乙烯与碳酸二甲酯的混合溶液(1:1,v/v)中,以1 M LiBF4膨胀的凝胶离子电导率超过1 mS cm−1,表明该凝胶可作为锂离子电池(LIBs)的凝胶电解质。用al基凝胶电解质和LiCoO2/石墨基电极组装了一个原型LIB,其体积和电荷转移电阻分别为4.1和9.7 Ω。此外,在28 mA g−1的电流密度下,其初始比容量达到104 mAh g−1,与使用商用聚乙烯分离器组装的参考LIB相当。这些结果表明,这种木质素基凝胶在储能装置中的应用具有巨大的潜力。
Swelling of lignin-based gel in salt-containing organic solvents and its application as gel electrolyte
Abstract A lignin-based gel prepared by the chemical crosslinking of hardwood acetic acid lignin (AL) with poly(ethylene glycol) diglycidyl ether has been reported to shrink in water and organic solvents but swell specifically in aqueous binary solutions. In this study, the AL-based gel was also found to swell in lithium-salt-containing organic solvents, namely, liquid electrolytes. The uptake of salt solutions reached five times the dry weight of the gel. The ionic conductivity of the gel swollen with 1 M LiBF4 in propylene carbonate or a mixed solution (1:1, v/v) of ethylene carbonate and dimethyl carbonate exceeded 1 mS cm−1 at room temperature (25 °C), suggesting that this gel can be applied as a gel electrolyte for lithium-ion batteries (LIBs). A prototype LIB was assembled with the AL-based gel electrolyte and LiCoO2/graphite-based electrodes and exhibited low bulk and charge transfer resistances of 4.1 and 9.7 Ω, respectively. Moreover, its initial specific capacity reached 104 mAh g−1 at a current density of 28 mA g−1, which is comparable to that of a reference LIB assembled using a commercial polyethylene separator. These results indicate the significant potential of this lignin-based gel for application in energy storage devices.
期刊介绍:
Holzforschung is an international scholarly journal that publishes cutting-edge research on the biology, chemistry, physics and technology of wood and wood components. High quality papers about biotechnology and tree genetics are also welcome. Rated year after year as one of the top scientific journals in the category of Pulp and Paper (ISI Journal Citation Index), Holzforschung represents innovative, high quality basic and applied research. The German title reflects the journal''s origins in a long scientific tradition, but all articles are published in English to stimulate and promote cooperation between experts all over the world. Ahead-of-print publishing ensures fastest possible knowledge transfer.