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High-performance green flexible electronics based on biodegradable cellulose nanofibril paper

Authors :
Qifeng Zheng
Munho Kim
Hongyi Mi
Huilong Zhang
Zhenqiang Ma
Vina W. Yang
Yei Hwan Jung
Hao Jiang
Shaoqin Gong
Zhiyong Cai
Dong-Wook Park
Sang June Cho
Juhwan Lee
Yijie Qiu
Chunhua Yao
Tzu-Hsuan Chang
Weidong Zhou
Source :
Nature Communications
Publication Year :
2015
Publisher :
Springer Science and Business Media LLC, 2015.

Abstract

Today's consumer electronics, such as cell phones, tablets and other portable electronic devices, are typically made of non-renewable, non-biodegradable, and sometimes potentially toxic (for example, gallium arsenide) materials. These consumer electronics are frequently upgraded or discarded, leading to serious environmental contamination. Thus, electronic systems consisting of renewable and biodegradable materials and minimal amount of potentially toxic materials are desirable. Here we report high-performance flexible microwave and digital electronics that consume the smallest amount of potentially toxic materials on biobased, biodegradable and flexible cellulose nanofibril papers. Furthermore, we demonstrate gallium arsenide microwave devices, the consumer wireless workhorse, in a transferrable thin-film form. Successful fabrication of key electrical components on the flexible cellulose nanofibril paper with comparable performance to their rigid counterparts and clear demonstration of fungal biodegradation of the cellulose-nanofibril-based electronics suggest that it is feasible to fabricate high-performance flexible electronics using ecofriendly materials.<br />The rapid evolution of consumer electronics means that out-of-date devices quickly end up in the scrap heap. Here, the authors fabricate electrical components using biodegradable and flexible cellulose nanofibril paper—a natural sustainable resource derived from wood.

Details

ISSN :
20411723
Volume :
6
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....94573c1abe142e17b8d76e24ea83af0e