首页> 外文期刊>Journal of power sources >Toward highly stable solid-state unconventional thin-film battery-supercapacitor hybrid devices: Interfacing vertical core-shell array electrodes with a gel polymer electrolyte
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Toward highly stable solid-state unconventional thin-film battery-supercapacitor hybrid devices: Interfacing vertical core-shell array electrodes with a gel polymer electrolyte

机译:面向高度稳定的固态非常规薄膜电池-超级电容器混合设备:垂直核壳阵列电极与凝胶聚合物电解质的连接

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摘要

A novel solid-state battery-supercapacitor hybrid device is fabricated for high-performance electrical energy storage using a Si anode and a TiO2 cathode in conjunction with a flexible, solid-like gel polymer electrolyte film as the electrolyte and separator. The electrodes were fabricated as three-dimensional nanostructured vertical arrays by sputtering active materials as conformal shells on vertically aligned carbon nanofibers (VACNFs) which serve as the current collector and structural template. Such nano structured vertical core-shell array-electrodes enable short Li-ion diffusion path and large pseudocapacitive contribution by fast surface reactions, leading to the hybrid features of batteries and supercapacitors that can provide high specific energy over a wide range of power rates. Due to the improved mechanical stability of the infiltrated composite structure, the hybrid cell shows excellent cycling stability and is able to retain more than 95% of the original capacity after 3500 cycles. More importantly, this solid-state device can stably operate in a temperature range from 20 to 60 degrees C with a very low self-discharge rate and an excellent shelf life. This solid-state architecture is promising for the development of highly stable thin-film hybrid energy storage devices for unconventional applications requiring largely varied power, wider operation temperature, long shelf-life and higher safety standards. (C) 2017 Elsevier B.V. All rights reserved.
机译:制造了一种新型的固态电池-超级电容器混合设备,该设备使用Si阳极和TiO2阴极以及柔性的固体状凝胶聚合物电解质膜作为电解质和隔膜,以实现高性能的电能存储。通过在垂直排列的碳纳米纤维(VACNFs)上将活性材料溅射为共形壳,将电极制成三维三维垂直阵列,将其用作集电器和结构模板。这种纳米结构的垂直核-壳型阵列电极通过快速的表面反应实现了短的锂离子扩散路径和较大的伪电容贡献,从而导致了电池和超级电容器的混合特性,可以在很宽的功率范围内提供高比能量。由于渗透复合结构的机械稳定性得到改善,混合电池显示了出色的循环稳定性,并且在3500次循环后能够保留超过原始容量的95%。更重要的是,该固态装置可以在20至60摄氏度的温度范围内稳定地工作,具有非常低的自放电率和极好的保质期。这种固态架构有望为需要非同寻常的应用开发高度稳定的薄膜混合储能设备,这些非常规应用要求功率变化很大,工作温度范围更大,保质期长且安全标准更高。 (C)2017 Elsevier B.V.保留所有权利。

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