Wet Chemical Etching of Al‐doped ZnO Film Deposited by RF Magnetron Sputtering Method on Textured Glass Substrate for Energy Application#

Author:

Hwang Ki‐Hwan1,Nam Sang‐Hun12,Jung Won Suk1,Lee Yong Min1,Yang Hee‐Su1,Boo Jin‐Hyo12

Affiliation:

1. Department of Chemistry Sungkyunkwan University Suwon 440‐746 Korea

2. Institute of Basic Science Sungkyunkwan University Suwon 440‐746 Korea

Abstract

The etching of glasses in aqueous hydrofluoric acid (HF) solutions is applied in many technological fields. Particularly, the textured transparent conductive oxide materials on the glass substrate etched by HF were used to improve the current density of solar cells. In this study, the textured glass substrate has been etched by solution and the Al‐doped ZnO (AZO) thin films have been prepared on this textured glass substrates by RF magnetron sputtering method. After the AZO film deposition, the surface of AZO has been etched by hydrochloric acid with different concentration and etching time. Etched AZO thin films had higher haze ratio and sheet resistance than bare AZO glass. Increases in the root‐mean‐square surface roughness of AZO films enhanced from 53.78 to 84.46 nm the haze ratio in above 700 nm wavelength. Our process could be applicable in texturing glass and etching AZO surface to fabricate solar cell in industrial scale. We also carried out fabricating an organic solar‐cell device. Energy conversion efficiency improvement of 123% was obtained with textured AZO‐based solar‐cell device compared with that of nontextured solar‐cell device.

Publisher

Wiley

Subject

General Chemistry

Reference19 articles.

1. Alkaline Etching for Reflectance Reduction in Multicrystalline Silicon Solar Cells

2. Multiple‐pass thin‐film silicon solar cell

3. B.Rech S.Wieder A.Loffel W.Reetz H.Wagner Texture etched ZnO:Al films as front contact and back reflector in amorphous silicon p-i-n and n-i-p solar cells. In Proceedings of the 26th PVSC Anaheim CA 1997 p. 619.

4. Rough ZnO layers by LP-CVD process and their effect in improving performances of amorphous and microcrystalline silicon solar cells

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