» Articles » PMID: 34871497

Broad-Spectrum Ultrathin-Metal-Based Oxide/Metal/Oxide Transparent Conductive Films for Optoelectronic Devices

Overview
Date 2021 Dec 6
PMID 34871497
Citations 3
Authors
Affiliations
Soon will be listed here.
Abstract

High-quality transparent conductive materials are beneficial to improve the charge transfer and light transmittance and reduce the interface defects as well as the production cost of optoelectronic devices. A high threshold thickness of metal layer in oxide/metal/oxide (OMO) compound thin films leads to strong reflectance, especially in the near-infrared region, limiting the broad-spectrum device applications. Here, we propose a novel Zn doping strategy using the low-cost single-target sputtering technology to achieve the growth of Ag-Zn thin films (i.e., Zn-doped Ag) and introduce a trace amount of O to further obtain ultrathin Ag-Zn(O) films (thin-film thickness ≤ 5 nm), which greatly improves the broad-spectrum characteristics of OMO films. Heterogeneous metal and gas doping technology effectively promotes the formation of two-dimensional continuous film growth. By combining the ultrathin Ag-Zn(O) layer with the MGZO (i.e., Mg- and Ga co-doped ZnO) oxide film grown by reactive plasma deposition, a typical broad-spectrum MGZO/Ag-Zn(O)/MGZO (50/5/50 nm)-OMO compound thin film exhibits an average transmittance of 91.6% in the wavelength range of 400-1200 nm and low sheet resistance. The broad-spectrum organic solar cells based on MGZO/Ag-Zn(O)/MGZO electrodes present a high power conversion efficiency of 15.35%, superior to those devices based on single-layer oxide electrodes. The distinguished performances are attributed to the ultrathin Ag-Zn(O) films in OMO, paving the way for applications in broad-spectrum optoelectronic and flexible electronic devices.

Citing Articles

Ameliorating Uniformity and Color Conversion Efficiency in Quantum Dot-Based Micro-LED Displays through Blue-UV Hybrid Structures.

Lee T, Miao W, Hung Y, Bai Y, Chen P, Huang W Nanomaterials (Basel). 2023; 13(14).

PMID: 37513110 PMC: 10384074. DOI: 10.3390/nano13142099.


Enhanced Responsivity and Optoelectronic Properties of Self-Powered Solar-Blind AgO/β-GaO Heterojunction-Based Photodetector with Ag:AZO Co-Sputtered Electrode.

Yoon Y, Park S, Park T, Kim H, Kim K, Hong J Nanomaterials (Basel). 2023; 13(7).

PMID: 37049380 PMC: 10096629. DOI: 10.3390/nano13071287.


Analysis of the Effect of Graphene, Metal, and Metal Oxide Transparent Electrodes on the Performance of Organic Optoelectronic Devices.

Chen Z, Wang Z, Wang J, Chen S, Zhang B, Li Y Nanomaterials (Basel). 2023; 13(1).

PMID: 36615935 PMC: 9824898. DOI: 10.3390/nano13010025.