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Inductively coupled plasma grown semiconductor films for low cost solar cells with improved light-soaking stability
Journal article   Open access   Peer reviewed

Inductively coupled plasma grown semiconductor films for low cost solar cells with improved light-soaking stability

Chang-Hong Shen, Chang-Hong Shen, Jia-Min Shieh, Jung Y. Huang, Hao-Chung Kuo, Chih-Wei Hsu, Bau-Tong Dai, Ching-Ting Lee, Ci-Ling Pan and Fu-Liang Yang
Applied Physics Letters, Vol.99(3), 033510
18/07/2011

Abstract

We investigate the performance of a single-junction amorphous Si (a-Si) solar cell fabricated with inductively coupled plasma (ICP) deposition technique. The high-density plasma resulting from high dissociation capacity of ICP enables good-quality hydrogenated Si films to be synthesized at low temperatures. High-density ICP also promotes the diffusion of reactive radicals on substrates and forms a-Si:H films with low defect density (∼3 × 10 15 cm -3 ). We demonstrate single-junction a-Si solar cells with a conversion efficiency of 9.6% and improved light-soaking stability. This low thermal-budget thin-film technique could open up the feasibility of efficient thin film solar cells on flexible substrates. © 2011 American Institute of Physics.
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