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Electron beam induced strong organic/inorganic grafting for thermally stable lithium-ion battery separators

机译:电子束诱导的强有机/无机接枝,用于热稳定的锂离子电池隔膜

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摘要

A tailored interface between organic and inorganic materials is of great importance to maximize the synergistic effects from hybridization. Polyethylene separators over-coated with inorganic thin films are the state-of-the art technology for preparing various secondary batteries with high safety. Unfortunately, the organic/inorganic hybrid separators have the drawback of a non-ideal interface, thus causing poor thermal/dimensional stability. Here, we report a straightforward method to resolve the drawback of the non-ideal interface between vapor deposited SiO2 and polyethylene separators, to produce a highly stable lithium-ion battery separator through strong chemical linking generated by direct electron beam irradiation. The simple treatment with an electron beam with an optimized dose generates thermally stable polymer separators, which may enhance battery safety under high-temperature conditions. Additionally, the newly formed Si-O-C or Si-CH3 chemical bonding enhances electrolyte-separator compatibility and thus may provide a better environment for ionic transport between the cathode and anode, thereby leading to better charge/discharge behaviors. (C) 2018 Elsevier B.V. All rights reserved.
机译:在有机材料和无机材料之间定制的界面对于最大化杂交的协同效应至关重要。覆盖有无机薄膜的聚乙烯隔膜是用于制备各种具有高安全性的二次电池的最新技术。不幸的是,有机/无机杂化隔板具有非理想界面的缺点,因此导致差的热/尺寸稳定性。在这里,我们报告了一种简单的方法来解决气相沉积的SiO2和聚乙烯隔板之间不理想界面的缺点,并通过直接电子束辐射产生的强化学键合来生产高度稳定的锂离子电池隔板。用优化剂量的电子束进行简单处理即可产生热稳定的聚合物隔膜,从而可以提高高温条件下的电池安全性。另外,新形成的Si-O-C或Si-CH 3化学键增强了电解质-隔膜的相容性,因此可以为阴极和阳极之间的离子传输提供更好的环境,从而导致更好的充电/放电行为。 (C)2018 Elsevier B.V.保留所有权利。

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