Recent Advances in Biodegradable Green Electronic Materials and Sensor Applications

石墨烯 材料科学 纳米技术 数码产品 环境友好型 纳米材料 导电聚合物 石墨 有机电子学 碳纤维 聚合物 复合材料 晶体管 电气工程 工程类 复合数 生态学 电压 生物
作者
JinKi Min,Yeongju Jung,Jiyong Ahn,Jae Gun Lee,Jinwoo Lee,Seung Hwan Ko
出处
期刊:Advanced Materials [Wiley]
卷期号:35 (52) 被引量:72
标识
DOI:10.1002/adma.202211273
摘要

Abstract As environmental issues have become the dominant agenda worldwide, the necessity for more environmentally friendly electronics has recently emerged. Accordingly, biodegradable or nature‐derived materials for green electronics have attracted increased interest. Initially, metal‐green hybrid electronics are extensively studied. Although these materials are partially biodegradable, they have high utility owing to their metallic components. Subsequently, carbon‐framed materials (such as graphite, cylindrical carbon nanomaterials, graphene, graphene oxide, laser‐induced graphene) have been investigated. This has led to the adoption of various strategies for carbon‐based materials, such as blending them with biodegradable materials. Moreover, various conductive polymers have been developed and researchers have studied their potential use in green electronics. Researchers have attempted to fabricate conductive polymer composites with high biodegradability by shortening the polymer chains. Furthermore, various physical, chemical, and biological sensors that are essential to modern society have been studied using biodegradable compounds. These recent advances in green electronics have paved the way toward their application in real life, providing a brighter future for society.
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