Flexible Transparent Conducting Hybrid Film Using a Surface-Embedded Copper Nanowire Network: A Highly Oxidation-Resistant Copper Nanowire Electrode for Flexible Optoelectronics
ACS Nano2014Vol. 8(10), pp. 10973–10979
Citations Over TimeTop 1% of 2014 papers
Hyeon‐Gyun Im, Soo‐Ho Jung, Jungho Jin, Dasom Lee, Jaemin Lee, Daewon Lee, Jung‐Yong Lee, Il‐Doo Kim, Byeong‐Soo Bae
Abstract
We report a flexible high-performance conducting film using an embedded copper nanowire transparent conducting electrode; this material can be used as a transparent electrode platform for typical flexible optoelectronic devices. The monolithic composite structure of our transparent conducting film enables simultaneously an outstanding oxidation stability of the copper nanowire network (14 d at 80 °C), an exceptionally smooth surface topography (R(rms) < 2 nm), and an excellent opto-electrical performances (Rsh = 25 Ω sq(-1) and T = 82%). A flexible organic light emitting diode device is fabricated on the transparent conducting film to demonstrate its potential as a flexible copper nanowire electrode platform.
Related Papers
- → Controlling the Growth of Single Nanowires in a Nanowire Forest for near-Infrared Photodetection(2018)7 cited
- → The role of collisions in the aligned growth of vertical nanowires(2008)31 cited
- Absorption of light in InP nanowire arrays(2014)
- → Molecular Dynamics Simulations Study on Ultrathin Cu Nanowires(2002)1 cited