| Literature DB >> 27184091 |
Xi Fan1, Bingang Xu, Shenghua Liu, Chaohua Cui2, Jinzhao Wang1, Feng Yan.
Abstract
Highly conductive, flexible, and transparent electrodes (FTEs) of PEDOT: PSS films on plastic substrates have been achieved using strong acid treatments. However, it is rare to realize a performance attenuation of PEDOT: PSS FTEs on plastic substrates and flexible optoelectronic devices because of strong acid residues in the PEDOT: PSS matrix. Herein, we develop a feasible transfer-printing technique using mild acids. Because of a mild and weak property of these acids and less acid residues in PEDOT: PSS matrix, the transferred PEDOT: PSS FTEs exhibited a significant enhancement in stability, conductivity (3500 S cm(-1)), transparency, and mechanical flexibility on plastic substrates. Flexible organic solar cells with the FTEs also showed a remarkable enhancement in power conversion efficiency and stability in the ambient atmosphere. It is expected that the novel transfer-printing technique for making PEDOT: PSS FTEs is also useful in many other types of flexible optoelectronic devices.Entities:
Keywords: PEDOT:PSS; acid residue; flexible electrode; organic solar cell; stability; transfer-printing
Year: 2016 PMID: 27184091 DOI: 10.1021/acsami.6b01389
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229