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首页> 外文期刊>Advanced Functional Materials >lonoskins: Nonvolatile, Highly Transparent, Ultrast retch able Ionic Sensory Platforms for Wearable Electronics
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lonoskins: Nonvolatile, Highly Transparent, Ultrast retch able Ionic Sensory Platforms for Wearable Electronics

机译:lonoskins:用于穿戴式电子设备的非易失性,高度透明,具有最高可抓取性的离子感官平台

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摘要

The primary technology of next-generation wearable electronics pursues the development of highly deformable and stable systems. Here, nonvolatile, highly transparent, and ultrastretchable ionic conductors based on polymeric gelators [poly(methyl methacrylate-ran-butyl acrylate), PMMA-r-PBA] and ionic liquids (IL) are proposed. A crucial strategy in the molecular design of polymer gelators is copolymerization of PMMA and IL-insoluble low glass transition temperature (T-g) polymers that can be deformed and effectively dissipate applied strains. Highly stretchable (elongation limit approximate to 850%), mechanically robust (elastic modulus approximate to 3.1 x 10(5) Pa), and deformation durable (recovery ratio approximate to 96.1% after 500 stretching/releasing cycles) gels are obtained by judiciously adjusting the molecular characteristics of polymer gelators and gel composition. An extremely simple "ionic" strain sensory platform is fabricated by directly connecting the stretchable gel and a digital multimeter, exhibiting high sensitivity (gauge factor approximate to 2.73), stable operation (>13 000 cycles), and nonvolatility (>10 d in air). Moreover, the skin-type strain sensor, referred to as ionoskin, is demonstrated. The gels are attached to a part of the body (e.g., finger, elbow, knee, or ankle) and various human movements are successfully monitored. The ionoskin renders the opportunity to achieve wearable ubiquitous electronics such as healthcare devices and smart textile systems.
机译:下一代可穿戴电子设备的主要技术致力于发展高度变形和稳定的系统。在此,提出了基于聚合物胶凝剂[聚(甲基丙烯酸甲酯-丙烯酸丁酯,PMMA-r-PBA)]和离子液体(IL)的非易失性,高透明性和超拉伸性离子导体。聚合物胶凝剂分子设计中的关键策略是PMMA和不溶于IL的低玻璃化转变温度(T-g)聚合物的共聚,该聚合物可以变形并有效消除施加的应变。通过适当调整,可获得高可拉伸性(伸长极限约为850%),机械强度(弹性模量约为3.1 x 10(5)Pa)和耐变形(在500次拉伸/释放循环后回复率约为96.1%)的凝胶。聚合物胶凝剂的分子特性和凝胶组成。通过直接连接可拉伸凝胶和数字万用表,可以制造出极其简单的“离子”应变感测平台,该平台具有很高的灵敏度(规格因子约为2.73),稳定的操作(> 13 000次循环)和不挥发(> 10 d的空气中) )。此外,说明了称为离子皮的皮肤型应变传感器。凝胶附着在身体的一部分(例如,手指,肘,膝盖或脚踝)上,并且成功地监测了各种人体运动。离子皮使人们有机会实现可穿戴的无处不在的电子设备,例如医疗设备和智能纺织系统。

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