Literature DB >> 29039201

Optical Transmittance Enhancement of Flexible Copper Film Electrodes with a Wetting Layer for Organic Solar Cells.

Guoqing Zhao, Myungkwan Song, Hee-Suk Chung1, Soo Min Kim2, Sang-Geul Lee3, Jong-Seong Bae4, Tae-Sung Bae1, Donghwan Kim2, Gun-Hwan Lee, Seung Zeon Han, Hae-Seok Lee5, Eun-Ae Choi, Jungheum Yun.   

Abstract

The development of highly efficient flexible transparent electrodes (FTEs) supported on polymer substrates is of great importance to the realization of portable and bendable photovoltaic devices. Highly conductive, low-cost Cu has attracted attention as a promising alternative for replacing expensive indium tin oxide (ITO) and Ag. However, highly efficient, Cu-based FTEs are currently unavailable because of the absence of an efficient means of attaining an atomically thin, completely continuous Cu film that simultaneously exhibits enhanced optical transmittance and electrical conductivity. Here, strong two-dimensional (2D) epitaxy of Cu on ZnO is reported by applying an atomically thin (around 1 nm) oxygen-doped Cu wetting layer. Analyses of transmission electron microscopy images and X-ray diffraction patterns, combined with first-principles density functional theory calculations, reveal that the reduction in the surface and interface free energies of the wetting layers with a trace amount (1-2 atom %) of oxygen are largely responsible for the two-dimensional epitaxial growth of the Cu on ZnO. The ultrathin 2D Cu layer, embedded between ZnO films, exhibits a highly desirable optical transmittance of over 85% in a wavelength range of 400-800 nm and a sheet resistance of 11 Ω sq-1. The validity of this innovative approach is verified with a Cu-based FTE that contributes to the light-to-electron conversion efficiency of a flexible organic solar cell that incorporates the transparent electrode (7.7%), which far surpasses that of a solar cell with conventional ITO (6.4%).

Entities:  

Keywords:  copper; flexible transparent electrode; organic solar cell; ultrathin film; wetting layer

Year:  2017        PMID: 29039201     DOI: 10.1021/acsami.7b10234

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  3 in total

1.  Pinhole-free TiO2/Ag(O)/ZnO configuration for flexible perovskite solar cells with ultralow optoelectrical loss.

Authors:  Eunwook Jeong; Soohyun Bae; Jong Bae Park; Seung Min Yu; Donghwan Kim; Hae-Seok Lee; Jongjoo Rha; Young-Rae Cho; Jungheum Yun
Journal:  RSC Adv       Date:  2019-03-19       Impact factor: 4.036

2.  Application of Solution Method to Prepare High Performance Multicomponent Oxide Thin Films.

Authors:  Yaru Pan; Xihui Liang; Zhihao Liang; Rihui Yao; Honglong Ning; Jinyao Zhong; Nanhong Chen; Tian Qiu; Xiaoqin Wei; Junbiao Peng
Journal:  Membranes (Basel)       Date:  2022-06-22

3.  Over 14% Efficiency Folding-Flexible ITO-free Organic Solar Cells Enabled by Eco-friendly Acid-Processed Electrodes.

Authors:  Wei Song; Ruixiang Peng; Like Huang; Chang Liu; Billy Fanady; Tao Lei; Ling Hong; Jinfeng Ge; Antonio Facchetti; Ziyi Ge
Journal:  iScience       Date:  2020-03-13
  3 in total

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