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Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing

Year 2013, Volume: 3 Issue: 4, 846 - 849, 01.12.2013

Abstract

The effect of process parameters such as saw damage removal, gas dilution and silane depletion are studied to maximize the efficiency of silicon a-Si/c-Si heterojuction solar cells. Furthermore, the effect of chemical treatment and annealing are also studied to understand their effect on performance of silicon heterojunction solar cells. A smooth and defect free junction is required to exploit the heterojunction properties of the junction and produce high open circuit voltage. Hence a smooth c-Si surface and the incorporation and migration of hydrogen in the amorphous silicon layers, especially the intrinsic amorphous layer, are very important. The process parameters affecting these properties have been studied and direct relation between the process parameters and the cell performance has been found.

Year 2013, Volume: 3 Issue: 4, 846 - 849, 01.12.2013

Abstract

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Details

Primary Language English
Journal Section Articles
Authors

Sandeep Chandril This is me

Manish Pathak This is me

Vinayan Bhardwaj This is me

Abhishek Sharan This is me

Nishi Chahar This is me

Son Pal Singh This is me

Anil Kumar Saxena This is me

Sudip Bhattacharya This is me

Publication Date December 1, 2013
Published in Issue Year 2013 Volume: 3 Issue: 4

Cite

APA Chandril, S., Pathak, M., Bhardwaj, V., Sharan, A., et al. (2013). Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing. International Journal Of Renewable Energy Research, 3(4), 846-849.
AMA Chandril S, Pathak M, Bhardwaj V, Sharan A, Chahar N, Singh SP, Saxena AK, Bhattacharya S. Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing. International Journal Of Renewable Energy Research. December 2013;3(4):846-849.
Chicago Chandril, Sandeep, Manish Pathak, Vinayan Bhardwaj, Abhishek Sharan, Nishi Chahar, Son Pal Singh, Anil Kumar Saxena, and Sudip Bhattacharya. “Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing”. International Journal Of Renewable Energy Research 3, no. 4 (December 2013): 846-49.
EndNote Chandril S, Pathak M, Bhardwaj V, Sharan A, Chahar N, Singh SP, Saxena AK, Bhattacharya S (December 1, 2013) Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing. International Journal Of Renewable Energy Research 3 4 846–849.
IEEE S. Chandril, M. Pathak, V. Bhardwaj, A. Sharan, N. Chahar, S. P. Singh, A. K. Saxena, and S. Bhattacharya, “Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing”, International Journal Of Renewable Energy Research, vol. 3, no. 4, pp. 846–849, 2013.
ISNAD Chandril, Sandeep et al. “Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing”. International Journal Of Renewable Energy Research 3/4 (December 2013), 846-849.
JAMA Chandril S, Pathak M, Bhardwaj V, Sharan A, Chahar N, Singh SP, Saxena AK, Bhattacharya S. Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing. International Journal Of Renewable Energy Research. 2013;3:846–849.
MLA Chandril, Sandeep et al. “Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing”. International Journal Of Renewable Energy Research, vol. 3, no. 4, 2013, pp. 846-9.
Vancouver Chandril S, Pathak M, Bhardwaj V, Sharan A, Chahar N, Singh SP, Saxena AK, Bhattacharya S. Dependence of Silicon Heterojunction Solar Cell Performance on Surface Preparation, Deposition Conditions, Chemical Treatment and Annealing. International Journal Of Renewable Energy Research. 2013;3(4):846-9.