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Stretchable Polymerized High Internal Phase Emulsion Separators for High Performance Soft Batteries

机译:用于高性能软电池的可伸展聚合的高内相乳液分离器

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摘要

Powering soft embodiments of robots, machines and electronics is a key issue that impacts emerging human friendly forms of technologies. Batteries as energy source enable their untethered operation at high power density but must be rendered elastic to fully comply with (soft) robots and human beings. Current intrinsically stretchable batteries typically show decreased performance when deformed due to design limitations, mainly imposed by the separator material. High quality stretchable separators such as gel electrolytes represent a key component of soft batteries that affects power, internal resistance, and capacity independently of battery chemistry. Here, polymerized high internal phase emulsions (polyHIPEs) are introduced as highly ionically conductive separators in stretchable (rechargeable) batteries. Highly porous (80%) separators result in electrolyte to polyHIPE conductivity ratios of below 2, while maintaining stretchability of approximate to 50% strain. The high stretchability, tunable porosity, and fast ion transport enable stretchable batteries with internal resistance below 3 omega and 16.8 mAh cm(-2) capacity that power on-skin processing and communication electronics. The battery/separator architecture is universally applicable to boost battery performance and represents a step towards autonomous operation of conformable electronic skins for healthcare, robotics, and consumers.
机译:为机器人,机器和电子产品提供动力,是影响新兴人类友好形式的技术的关键问题。电池作为能量源使其在高功率密度下不受限度的操作,但必须呈现弹性以完全符合(软)机器人和人类。目前的本质上拉伸电池通常显示出在由于设计限制而变形时的性能降低,主要由分离材料施加。诸如凝胶电解质的高质量可伸缩隔板代表了影响功率,内阻和电池化学的电力,内阻和容量的软电池的关键部件。这里,将聚合的高内相乳液(Polyhipes)引入可拉伸(可充电)电池中的高度离子导电分离器。高度多孔(> 80%)分离器导致电解质至低于2的电导率比,同时保持近似致株的拉伸性。高可拉伸性,可调谐孔隙度和快速离子运输,可伸展电池,内部电阻低于3Ω和16.8mAhcm(-2)容量,可为皮肤加工和通信电子设备提供动力。电池/分离器架构普遍适用于提升电池性能,并表示保健,机器人和消费者适用电子皮肤的自主操作的一步。

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  • 来源
    《Advanced energy materials》 |2020年第19期|2000467.1-2000467.8|共8页
  • 作者单位

    Johannes Kepler Univ Linz Div Soft Matter Phys Inst Expt Phys Altenberger Str 69 A-4040 Linz Austria|Johannes Kepler Univ Linz Soft Mat Lab Linz Inst Technol Altenberger Str 69 A-4040 Linz Austria;

    Johannes Kepler Univ Linz Div Soft Matter Phys Inst Expt Phys Altenberger Str 69 A-4040 Linz Austria|Johannes Kepler Univ Linz Soft Mat Lab Linz Inst Technol Altenberger Str 69 A-4040 Linz Austria;

    Univ Vienna PaCE Grp Inst Mat Chem & Res Wahringer Str 42 A-1090 Vienna Austria|Imperial Coll London PaCE Grp Dept Chem Engn South Kensington Campus London SW7 2AZ England;

    Johannes Kepler Univ Linz Div Soft Matter Phys Inst Expt Phys Altenberger Str 69 A-4040 Linz Austria|Johannes Kepler Univ Linz Soft Mat Lab Linz Inst Technol Altenberger Str 69 A-4040 Linz Austria;

    Johannes Kepler Univ Linz Div Soft Matter Phys Inst Expt Phys Altenberger Str 69 A-4040 Linz Austria|Johannes Kepler Univ Linz Soft Mat Lab Linz Inst Technol Altenberger Str 69 A-4040 Linz Austria;

    Johannes Kepler Univ Linz Div Soft Matter Phys Inst Expt Phys Altenberger Str 69 A-4040 Linz Austria|Johannes Kepler Univ Linz Soft Mat Lab Linz Inst Technol Altenberger Str 69 A-4040 Linz Austria;

    Univ Vienna PaCE Grp Inst Mat Chem & Res Wahringer Str 42 A-1090 Vienna Austria|Imperial Coll London PaCE Grp Dept Chem Engn South Kensington Campus London SW7 2AZ England;

    Johannes Kepler Univ Linz Div Soft Matter Phys Inst Expt Phys Altenberger Str 69 A-4040 Linz Austria;

    Johannes Kepler Univ Linz Div Soft Matter Phys Inst Expt Phys Altenberger Str 69 A-4040 Linz Austria|Johannes Kepler Univ Linz Soft Mat Lab Linz Inst Technol Altenberger Str 69 A-4040 Linz Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    batteries; dielectrics; porous materials; stretchable electronics;

    机译:电池;电介质;多孔材料;可拉伸电子;

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