High mobility of IGO/IGZO double-channel thin-film transistors by atomic layer deposition

Author:

Wen Pan1ORCID,Peng Cong1ORCID,Chen Zihui1ORCID,Ding Xingwei1ORCID,Chen Fa-Hsyang2,Yan Guowen3,Xu Lin2,Wang Dejian3,Sun Xiaoqi2,Chen Longlong1ORCID,Li Junfeng2,Li Xifeng1ORCID,Zhang Jianhua1ORCID

Affiliation:

1. Key Laboratory of Advanced Display and System Applications of Ministry of Education, Shanghai University 1 , Shanghai 200072, China

2. Kunshan Govisionox Optoelectronics Co., Ltd 2 ., Suzhou, Jiangsu 215301, China

3. Hefei Visionox Technology Co., Ltd 3 ., Hefei, Anhui 230000, China

Abstract

In this paper, top-gate thin-film transistors (TFTs) of two stacked double-channel layers derived from atomic layer deposition in combination with the plasma-enhanced chemical vapor deposition (PECVD) process were fabricated. The Hall measurement shows that the Hall mobility of the indium gallium oxide (IGO)/indium gallium zinc oxide (IGZO) active layer is 1.6 times more that of the amorphous In-rich IGZO/IGZO layer due to superior carrier percolation conduction paths from the polycrystalline IGO layer. Furthermore, x-ray photoelectron spectroscopy analysis indicates that the IGO/IGZO film has much less oxygen vacancy concentration, which is advantageous in improving not only mobility but also stability. The optimized IGO/IGZO TFT showed both high mobility (38.0 cm2 V−1 s−1) and high stability (ΔVTH = +0.14 V) of a positive bias stress under post-deposition annealing at 250 °C. This strategy provides a feasible process for realizing high-performance TFTs that is compatible with ALD-derived oxides and commercial PECVD techniques in the industry.

Funder

National Natural Science Foundation of China

Publisher

AIP Publishing

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