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Engineering the Surface/Interface of Horizontally Oriented Carbon Nanotube Macrofilm for Foldable Lithium-Ion Battery Withstanding Variable Weather

机译:水平取向碳纳米管宏观薄膜的表面/界面设计,用于可折叠锂离子电池的可承受多变天气

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摘要

Flexible lithium-ion batteries attract extensive attention in wearable electronics but are limited by severe capacity loss under extreme weather due to the poor flexible current collector. Herein, a horizontally oriented carbon nanotube macrofilm (HUCNM) with excellent electrical conductivity and tuned electrolyte wettability through engineering the surface/interface of HUCNM is reported for foldable batteries, which exhibits a high capacity of 700 mAh with excellent flexibility and stable charge/discharge rate performance in several extreme conditions. Such amazing results are ascribed to the excellent contact and interaction among the current collector, active material, and electrolyte, which is rising from the surface/interface engineering of carbon nanotube films. This work provides useful insights in the engineering of the surface/interface of carbon current collectors, and revolutionizes the traditional design for wearable electronics, transcending these devices beyond their current limitations.
机译:柔性锂离子电池在可穿戴电子产品中受到广泛关注,但由于柔性集流体较差,在极端天气下受到严重容量损失的限制。本文报道了一种水平取向碳纳米管宏观薄膜(HUCNM),该薄膜通过对HUCNM的表面/界面进行工程设计,具有优异的导电性和调谐电解质润湿性,用于可折叠电池,该薄膜在几种极端条件下表现出700 mAh的高容量和优异的柔韧性和稳定的充放电速率性能。如此惊人的结果归因于集流体、活性材料和电解质之间的良好接触和相互作用,这是从碳纳米管薄膜的表面/界面工程中上升的。这项工作为碳集流器的表面/界面工程提供了有用的见解,并彻底改变了可穿戴电子设备的传统设计,超越了这些设备的当前限制。

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