Anisotropic flexible transparent films from remaining wood microstructures for screen protection and AgNW conductive substrate
Author:
Affiliation:
1. Research Institute of Wood Industry
2. Chinese Academy of Forestry
3. No 1 Dongxiaofu
4. Beijing
5. PR China
6. College of Furniture and Industrial Design
7. Nanjing Forestry University
8. No. 159 LongPan Road
9. Jiangsu
Abstract
For the first time, we report the development of a simple yet effective approach for the fabrication of a flexible transparent wood film that retains well-aligned cell structures with high transparency, and which can be used as a screen protection film for cellphones and as a AgNW conductive substrate.
Funder
Chinese Academy of Forestry
Publisher
Royal Society of Chemistry (RSC)
Subject
General Materials Science
Link
http://pubs.rsc.org/en/content/articlepdf/2018/NR/C7NR08367J
Reference45 articles.
1. Scalable Coating and Properties of Transparent, Flexible, Silver Nanowire Electrodes
2. Fabrication of silver nanowire transparent conductive films with an ultra-low haze and ultra-high uniformity and their application in transparent electronics
3. Recent Development of Transparent Conducting Oxide-Free Flexible Thin-Film Solar Cells
4. An Ag-grid/graphene hybrid structure for large-scale, transparent, flexible heaters
5. Strong and Tough Cellulose Nanopaper with High Specific Surface Area and Porosity
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