Wei Di, Cotton Darryl, Ryhänen Tapani
Nokia Research Centre, Broers Building, 21 JJ Thomson Av., CB3 0FA, Cambridge, UK.
Nanomaterials (Basel). 2012 Aug 13;2(3):268-274. doi: 10.3390/nano2030268.
A rollable and all-solid-state textile lithium battery based on fabric matrix and polymer electrolyte that allows flexibility and fast-charging capability is reported. When immerged into poly(3,4-ethylenedioxythiophene) (PEDOT) nano-emulsion inks, an insulating fabric is converted into a conductive battery electrode for a fully solid state lithium battery with the highest specific energy capacity of 68 mAh/g. This is superior to most of the solid-state conducting polymer primary and/or secondary batteries reported. The bending radius of such a textile battery is less than 1.5 mm while lightening up an LED. This new material combination and inherent flexibility is well suited to provide an energy source for future wearable and woven electronics.
据报道,一种基于织物基体和聚合物电解质的可卷曲全固态纺织锂电池,具有柔韧性和快速充电能力。当浸入聚(3,4-乙撑二氧噻吩)(PEDOT)纳米乳液油墨中时,绝缘织物可转化为用于全固态锂电池的导电电池电极,其最高比能量为68 mAh/g。这优于大多数已报道的固态导电聚合物一次和/或二次电池。这种纺织电池在点亮LED时的弯曲半径小于1.5毫米。这种新的材料组合和固有的柔韧性非常适合为未来的可穿戴和编织电子产品提供能源。