材料科学
弹性体
可扩展性
可穿戴计算机
可穿戴技术
纳米技术
糊精
计算机科学
嵌入式系统
复合材料
生物化学
数据库
化学
淀粉
作者
Xiaohong Lan,Wenjian Li,Chongnan Ye,Laura Boetje,Théophile Pelras,Fitrilia Silvianti,Qi Chen,Yutao Pei,Katja Loos
标识
DOI:10.1021/acsami.2c15634
摘要
Elastomer-based wearables can improve people's lives; however, frictional wear caused by manipulation may pose significant concerns regarding their durability and sustainability. To address the aforementioned issue, a new class of advanced scalable supersoft elastic transparent material (ASSETm) is reported, which offers a unique combination of scalability (20 g scale), stretchability (up to 235%), and enzymatic degradability (up to 65% in 30 days). The key feature of our design is to render native dextrin hydrophobic, which turns it into a macroinitiator for bulk ring-opening polymerization. Based on ASSETm, a self-powered touch sensor (ASSETm–TS) for touch sensing and non-contact approaching detection, possessing excellent electrical potential (up to 65 V) and rapid response time (60 ms), is fabricated. This work is a step toward developing sustainable soft electronic systems, and ASSETm's tunability enables further improvement of electrical outputs, enhancing human-interactive applications.
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