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Laser printing of nanocomposite solid-state electrolyte membranes for Li micro-batteries

机译:锂微电池纳米复合固态电解质膜的激光印刷

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摘要

The electrochemical and mechanical properties of nanocomposite solid-state electrolyte membranes deposited using a laser direct-write technique from a suspended solution comprised of an ionic liquid (1,2-dimethyl-3-n-butylimidazolium-bis-trifluoromethanesulfonylimide)-polymer (poly(vinylidene fluoride-co-hexafluoropropylene)) matrix with dispersed nano-particles (TiO2) are reported and discussed. These laser printed nanocomposite solid-state membranes are shown to exhibit the proper electrochemical behavior for ionic liquids while maintaining the strength and flexibility of the polymer matrix. This combination of physical properties and deposition technique makes these deposited nanocomposite membranes ideally suited for use as an electrolyte/separator in Li micro-batteries. Sample Li micro-batteries using these laser printed nanocomposite membranes have been fabricated and their charge/discharge behavior tested, demonstrating the feasibility of using these nanocomposite membranes in Li micro-battery applications. Published by Elsevier B.V.
机译:使用激光直接写入技术从由离子液体(1,2-二甲基-3-正丁基咪唑鎓双三氟甲烷磺酰亚胺)-聚合物(聚报告和讨论了具有分散的纳米粒子(TiO2)的(偏二氟乙烯-六氟丙烯共聚物)基质。这些激光印刷的纳米复合固态膜显示出对离子液体适当的电化学性能,同时保持了聚合物基质的强度和柔韧性。物理性能和沉积技术的结合使这些沉积的纳米复合膜非常适合用作Li微电池中的电解质/隔膜。已经制造了使用这些激光印刷纳米复合膜的样品锂微电池,并测试了它们的充电/放电行为,证明了在锂微电池应用中使用这些纳米复合膜的可行性。由Elsevier B.V.发布

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