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논문 기본 정보

자료유형
학술저널
저자정보
Qian Yece (Chizhou University) Shi Guoping (Chizhou University) Zhang Yufeng (Chizhou University)
저널정보
한국전기전자재료학회 Transactions on Electrical and Electronic Materials Transactions on Electrical and Electronic Materials 제24권 제1호
발행연도
2023.2
수록면
5 - 12 (8page)
DOI
https://doi.org/10.1007/s42341-022-00411-x

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To achieve the best results of quantum well systems, a solar cell with the best output results is required. This field of study is important because of the capacity to increase the efficiency of the solar cell, which can absorb most of the solar spectrum, which conventional transparent or crystal solar cells cannot do. In this paper, a novel multi-junction solar cell with 13 layers of barrier wells and 14 layers of quantum wells are included in the middle part of the reference solar cell is designed and simulated. To have the best outputs from the Quantum/Barrier Wells Solar Cell (QBW-SC), the thickness of the window, emitter, and base layers are selected as 550, 50, and 50 nm, respectively. In the best case, the short-circuit current is J SC = 71.8594 mA/cm 2 and the open-circuit voltage is V OC = 0.99 V. The rate of fill factor and effi ciency are FF = 87.3472% and ƞ = 59.9674%, respectively, which seems to be acceptable compared to other cases and can be implemented empirically, and of course, it is predicted that the cost has a lower build than the samples provided. Finally, to prove the superiority and optimization of the proposed solar cell structure, it is compared with other similar structures in recent years.

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