Nano-percolation engineering of carbon nanotube films for ultra-high transmittance exceeding 99 %

Citations

WEB OF SCIENCE

2
Citations

SCOPUS

4

초록

Flexible and transparent electrodes (FTEs) are fundamental to the advancement of next-generation wearable electronics. Carbon nanotube (CNT)-based transparent films have emerged as compelling alternatives to conventional indium tin oxide (ITO)-based electrodes, owing to their superior optoelectronic properties, exceptional physicochemical stability, and remarkable mechanical flexibility. However, achieving high optical transmittance (T) while preserving electrical conductivity and scalability remains a formidable challenge. Here, we present a novel nano-percolation strategy to integrate high transparency with strong network connectivity in aerogels using a minimal amount of CNTs. Temperature-induced percolation enables the creation of resilient aerogel networks, even at unprecedentedly low CNT concentrations. This approach leads to the fabrication of FTEs exhibiting a T of up to 99.4 %, alongside unparalleled optoelectronic properties and scalability for large-scale production. The CNT films combine high functionality with transparency, making them ideal for a range of advanced applications.

키워드

Carbon nanotubesTransparent conductive filmsNano-percolation engineeringFloating catalyst vapor depositionLarge-scale productionHIGH-PERFORMANCETRANSPARENT ELECTRODESSINGLE-WALLGRAPHENECONDUCTIVITY
제목
Nano-percolation engineering of carbon nanotube films for ultra-high transmittance exceeding 99 %
저자
Park, Jae SeoPark, Ji YongJang, Da HeeKim, Jung SubChoi, MinseoukKang, YosubKang, Ji WonKim, Dong KyumLee, YongjinCho, Young ShikKim, Jae HoKim, TaehoonYang, Seung Jae
DOI
10.1016/j.cej.2025.172247
발행일
2026-01-15
유형
Article
저널명
Chemical Engineering Journal
528