Cellulose‐Based Flexible Functional Materials for Emerging Intelligent Electronics
Northeast Forestry University · Shenyang University of Chemical Technology · +2 more institutions
Abstract
Abstract There is currently enormous and growing demand for flexible electronics for personalized mobile equipment, human–machine interface units, wearable medical‐healthcare systems, and bionic intelligent robots. Cellulose is a well‐known natural biopolymer that has multiple advantages including low cost, renewability, easy processability, and biodegradability, as well as appealing mechanical performance, dielectricity, piezoelectricity, and convertibility. Because of its multiple merits, cellulose is frequently used as a substrate, binder, dielectric layer, gel electrolyte, and derived carbon material for flexible electronic devices. Leveraging the advantages of cellulose to design advanced functional…
Citation impact
- FWCI
- 43.20
- Percentile
- 100%
- References
- 148
Authors
6- DZDawei Zhao
Northeast Forestry University, Shenyang University of Chemical Technology
- YZYing Zhu
Northeast Forestry University
- WCWanke Cheng
Northeast Forestry University
- WCWenshuai Chen
Northeast Forestry University
- YWYiqiang WuCorresponding
Central South University of Forestry and Technology, Central South University
Topics & keywords
- Materials science
- Electronics
- Nanotechnology
- Flexible electronics
- Cellulose
- Stretchable electronics
- Bioelectronics
- Printed electronics
- Affordable and clean energy