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Plant-Based Substrate Materials for Flexible Green Electronics

Authors
Hwang, YoungkyuKim, Min KuZhao, ZeKim, BongjoongChang, TaehooFan, Teng FeiIbrahim, Mohammed ShahrudinSuresh, SubraLee, Chi HwanCho, Nam-Joon
Issue Date
1-Dec-2022
Publisher
WILEY
Keywords
biological materials; biopolymers; flexible electronics; pollen grains; wearable electronics
Citation
ADVANCED MATERIALS TECHNOLOGIES, v.7, no.12
Journal Title
ADVANCED MATERIALS TECHNOLOGIES
Volume
7
Number
12
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/32963
DOI
10.1002/admt.202200446
ISSN
2365-709X
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.
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