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자료유형
학술저널
저자정보
Swagata Panchanan (Sungkyunkwan University) Subhajit Dutta (Sungkyunkwan University) Kumar Mallem (Sungkyunkwan University) Simpy Sanyal (Sungkyunkwan University) Jinjoo Park (Sungkyunkwan University) Minkyu Ju (Sungkyunkwan University) Young Hyun Cho (Sungkyunkwan University) Eun-Chel Cho (Sungkyunkwan University) Junsin Yi (Sungkyunkwan University)
저널정보
한국태양광발전학회 Current Photovoltaic Research Current Photovoltaic Research Vol.6 No.4
발행연도
2018.12
수록면
109 - 118 (10page)

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초록· 키워드

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Silicon (Si) solar cells are the most successful technology which are ruling the present photovoltaic (PV) market. In that essence, multijunction (MJ) solar cells provided a new path to improve the state-of-art efficiencies. There are so many hurdles to grow the MJ III-V materials on Si substrate as Si with other materials often demands similar qualities, so it is needed to realize the prospective of Si tandem solar cells. However, Si tandem solar cells with MJ III-V materials have shown the maximum efficiency of 30 %. This work reviews the development of the III-V/Si solar cells with the synopsis of various growth mechanisms i.e hetero-epitaxy, wafer bonding and mechanical stacking of III-V materials on Si substrate. Theoretical approaches to design efficient tandem cell with an analysis of state-of-art silicon solar cells, sensitivity, difficulties and their probable solutions are discussed in this work. An analytical model which yields the practical efficiency values to design the high efficiency III-V/Si solar cells is described briefly.

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ABSTRACT
1. Introduction
2. Theoretical approach for efficiencies of III-V silicon solar cell
3. Analysis of Arial Current Matching (ACM)
4. Sensitivity Analysis
5. Growth mechanisms
6. CONCLUSION
References

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