Plant‐Based Substrate Materials for Flexible Green Electronics

Youngkyu Hwang, Min Ku Kim, Ze Zhao, Bongjoong Kim, Taehoo Chang, Tengfei Fan, Mohammed Shahrudin Bin Ibrahim, Subra Suresh, Chi Hwan Lee, Nam‐Joon Cho
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Abstract

With the increasing use of soft and flexible electronics, there is a growing need to develop substrate materials that mitigate potential environmental risks associated with non‐degradable electronics waste from synthetic substrate materials. To address this issue, the authors develop a novel, 2D plant‐based substrate termed “sporosubstrate”, which is made of non‐allergenic natural pollen. The pollen particle has a double‐layered architecture with an ultra‐tough sporopollenin exine, and a soft cellulose intine is engineered through an eco‐friendly process. In this manner, a readily available, economical, biodegradable, and biocompatible microgel can be prepared. This microgel can be used to create a variety of flexible shapes with customized mechanical, geometrical, electronic, and functional properties and performance characteristics such as thermal, chemical, and mechanical stability and optical transparency. Moreover, the authors demonstrate here different applications of the flexible natural substrate made of pollen microgel for use in electronic devices for health monitoring and wearable wireless heating. The results of this work point to opportunities for the development of a new class of flexible green electronics based on plant‐based materials in applications such as wearable sensors, implantable devices, and soft robotics.
柔性绿色电子器件的植物基衬底材料
随着软性和柔性电子产品的使用越来越多,人们越来越需要开发衬底材料,以减轻合成衬底材料产生的不可降解电子废物带来的潜在环境风险。为了解决这个问题,作者开发了一种新的二维植物基质,称为“孢子基质”,它由非过敏性天然花粉制成。花粉颗粒具有双层结构,具有超坚韧的孢子花粉外壁,以及通过环保工艺设计的柔软纤维素内层。以这种方式,可以制备容易获得的、经济的、可生物降解的和生物相容的微凝胶。这种微凝胶可用于创建各种灵活的形状,具有定制的机械,几何,电子和功能特性和性能特征,如热,化学,机械稳定性和光学透明度。此外,作者在这里展示了花粉微凝胶制成的柔性天然基质在健康监测和可穿戴无线加热电子设备中的不同应用。这项工作的结果为开发一类基于植物基材料的新型柔性绿色电子产品提供了机会,这些材料可用于可穿戴传感器、可植入设备和软机器人等应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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