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首页> 外文期刊>Advanced energy materials >All-Printed, Stretchable Zn-Ag2O Rechargeable Battery via Hyperelastic Binder for Self-Powering Wearable Electronics
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All-Printed, Stretchable Zn-Ag2O Rechargeable Battery via Hyperelastic Binder for Self-Powering Wearable Electronics

机译:通过超弹性粘合剂的全印刷可拉伸Zn-Ag2O可充电电池,用于自供电可穿戴电子设备

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摘要

While several stretchable batteries utilizing either deterministic or random composite architectures have been described, none have been fabricated using inexpensive printing technologies. In this study, the authors printed a highly stretchable, zinc-silver oxide (Zn-Ag2O) battery by incorporating polystyrene-block-polyisoprene-block-polystyrene (SIS) as a hyperelastic binder for custom-made printable inks. The remarkable mechanical properties of the SIS binder lead to an all-printed, stretchable Zn-Ag2O rechargeable battery with a approximate to 2.5 mA h cm(-2) reversible capacity density even after multiple iterations of 100% stretching. This battery offers the highest reversible capacity and discharge current density for intrinsically stretchable batteries reported to date. The electrochemical and mechanical properties are characterized under different strain conditions. The new stress-enduring printable inks pave ways for further developing stretchable electronics for the wide range of wearable applications.
机译:虽然已经描述了利用确定性或随机复合结构的几种可拉伸电池,但是没有使用廉价的印刷技术来制造的。在这项研究中,作者通过将聚苯乙烯嵌段聚异戊二烯嵌段聚苯乙烯(SIS)掺入作为可定制印刷油墨的超弹性粘合剂,来印刷出高度可拉伸的氧化锌银(Zn-Ag2O)电池。 SIS粘合剂的卓越机械性能导致了全印刷,可拉伸的Zn-Ag2O可充电电池,即使经过多次100%拉伸,其可逆容量密度仍约为2.5 mA h cm(-2)。迄今为止,该电池为本质上可拉伸的电池提供了最高的可逆容量和放电电流密度。在不同的应变条件下表征其电化学和机械性能。新型可承受压力的可印刷油墨为进一步开发可拉伸的电子产品铺平了道路,这些电子产品可用于各种可穿戴应用。

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