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Flexible thin-film battery based on graphene-oxide embedded in solid polymer electrolyte

机译:灵活的基于石墨烯氧化物薄膜电池嵌入在固体聚合物电解质

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Enhanced safety of flexible batteries is an imperative objective due to the intimate interaction of such devices with human organs such as flexible batteries that are integrated with touch-screens or embedded in clothing or space suits. In this study, the fabrication and testing of a high performance thin-film Li-ion battery (LIB) is reported that is both flexible and relatively safer compared to the conventional electrolyte based batteries. The concept is facilitated by the use of solid polymer nanocomposite electrolyte, specifically, composed of polyethylene oxide (PEO) matrix and 1 wt% graphene oxide (GO) nanosheets. The flexible LIB exhibits a high maximum operating voltage of 4.9 V, high capacity of 0.13 mA h cm(-2) and an energy density of 4.8 mW h cm(-3). The battery is encapsulated using a simple lamination method that is economical and scalable. The laminated battery shows robust mechanical flexibility over 6000 bending cycles and excellent electrochemical performance in both flat and bent configurations. Finite element analysis (FEA) of the LIB provides critical insights into the evolution of mechanical stresses during lamination and bending.
机译:增强电池是一个灵活的安全必须客观由于亲密这些设备与人类器官的相互作用比如灵活的集成电池触摸屏或嵌入在衣服或宇航服。高性能薄膜锂离子的检测电池(自由)报道,既灵活和相对比传统更安全基于电解质电池。通过固体聚合物的使用纳米复合电解质,特别是,组成聚氧化乙烯(PEO)矩阵和1 wt %石墨烯氧化物nanosheets(去)。展览的最大工作电压高4.9h V,马高容量为0.13厘米(2)和一个能量密度的4.8 mW h厘米(3)。使用一个简单的纹理方法封装这是经济和可伸缩的。电池显示强劲的机械灵活性6000年弯曲周期和优秀的电化学表现在平面和弯曲的配置。有限元分析(FEA)的自由提供了关键的见解的进化在纹理和机械应力弯曲。

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