材料科学
光致聚合物
导电体
复合材料
纤维素
导电聚合物
聚合物
共晶体系
透射率
柔性电子器件
深共晶溶剂
纳米技术
化学工程
光电子学
聚合
微观结构
工程类
作者
Ming Wang,Ren’ai Li,Guixian Chen,Shenghui Zhou,Feng Xing,Yi‐An Chen,Mengchang He,Detao Liu,Tao Song,Qi Hu
标识
DOI:10.1021/acsami.9b00728
摘要
The rational design of high-performance, flexible, transparent, electrically conducting sensor attracts considerable attention. However, these designed devices predominantly utilize glass and plastic substrates, which are expensive and not environmentally friendly. Here, novel transparent and conductive woods (TCWs) were fabricated by using renewable wood substrates and low-cost conductive polymers. Polymerizable deep eutectic solvents (PDES), acrylic-acid (AA)/choline chloride (ChCl), were used as backfilling agents and in situ photopolymerized in the delignified wood, which endowed the materials with high transparency (transmittance of 90%), good stretchability (strain up to 80%), and high electrical conductivity (0.16 S m–1). The retained cellulose orientation and strong interactions between the cellulose-rich template and poly(PDES) endow TCWs with excellent mechanical properties. Moreover, TCWs exhibited excellent sensing behaviors to strain/touch, even at low strain. Therefore, these materials can be used to detect weak pressure such as human being’s subtle bending-release activities. This work provides a new route to fabricate functional composite materials and devices which have promising potential for electronics applications in flexible displays, tactile skin sensors, and other fields.
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