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Deposition SnO2/Nitrogen-Doped Graphene Nanocomposites on the Separator: A New Type of Flexible Electrode for Energy Storage Devices

机译:在隔膜上沉积SnO2 /掺杂氮的石墨烯纳米复合材料:一种用于储能装置的新型柔性电极

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摘要

It is currently very urgent to develop flexible energy storage devices because of the growing academic interest in and strong technical demand of flexible electronics. Exploration of high-performance electrode materials and a corresponding assembly method for fabrication of flexible energy storage devices plays a critical role in fulfilling this demand. Here, we have developed a facile, economic, and green hydrothermal process to synthesize ultrasmall SnO2 nanocrystallitesitrogen-doped graphene nanocomposites (USNGs) as a high-performance electrode material for Li-ion batteries (LIBs). Furthermore, using the glass microfiber filters (GMFs) as supporting substrate, the novel flexible USNG-GMF bilayered films have been prepared by depositing the as-prepared USNG on GMF through a simple vacuum nitration. Significantly, for the first time, the flexible USNG-GMF bilayered films have directly been used for assembling LIBs, where the GMF further functions as a separator. The obtained highly robust, binder-free, conducting agent-free, and current collector-free new type of flexible electrodes show excellent LIB performance.
机译:由于对柔性电子学的日益增长的学术兴趣和强烈的技术需求,当前迫切需要开发柔性储能设备。对高性能电极材料的探索以及用于制造柔性能量存储设备的相应组装方法在满足这一需求方面起着至关重要的作用。在这里,我们开发了一种简便,经济,绿色的水热工艺,以合成超小型SnO2纳米晶体/氮掺杂的石墨烯纳米复合材料(USNG),作为锂离子电池(LIB)的高性能电极材料。此外,使用玻璃微纤维过滤器(GMFs)作为支撑基板,通过简单的真空硝化将所制备的USNG沉积在GMF上,制备了新型柔性USNG-GMF双层薄膜。重要的是,柔性USNG-GMF双层薄膜首次直接用于组装LIB,而GMF进一步充当分隔器。所获得的高度坚固,无粘合剂,无导电剂和无集流体的新型柔性电极表现出出色的LIB性能。

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