Distinct Design for Two Terminal Crystalline Silicon Bottom-Based III-V Tandem Devices via Direct Electrode Interconnection and Enlarged Bottom Area

  • Zahid, Muhammad Aleem
  • Han, Seungyong
  • Hasan, Syed Azkar U., I
  • Dao, Vinh-Ai
  • Nguyen, Minh Phuong
  • ... Yi, Junsin
  • 외 1명
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초록

An innovative two-terminal III-V/c-Si multijunction device is constructed using direct electrode connections and extending the bottom area to improve carrier transport and current matching between the top III-V and bottom c-Si devices. A commercial triple junction GaInP2/InGaAs/Ge top cell (1 cm2) with a complete cover electrode at the rear is connected directly to a silicon heterojunction (SHJ) bottom device using silver paste. The area of the SHJ bottom device is enlarged from 0.69 cm2 to 15 cm2 to match the current density of the top. With a small active area of 0.69 cm2, the bottom device has a current density of 13.6 mA/cm2, comparable to the top device's (13.5 mA/cm2). By optimizing the SHJ bottom, the multijunction device achieves an impressive efficiency of 39.5% with a short circuit current density of 13.5 mA/cm2, an open circuit voltage of 3.45 V, and an 85% fill factor. This initial design demonstrates the potential to significantly improve the efficiency of a two-terminal III-V/c-Si tandem device by increasing the matching current levels of both top and bottom cells.

키워드

III-V solarcellssilicon heterojunction solarcellsmultijunction III-V/c-Si solar cellstwo terminal III-V/c-Si tandem deviceinterconnectionelectrodeGAAS SOLAR-CELLEFFICIENCYPERFORMANCE
제목
Distinct Design for Two Terminal Crystalline Silicon Bottom-Based III-V Tandem Devices via Direct Electrode Interconnection and Enlarged Bottom Area
저자
Zahid, Muhammad AleemHan, SeungyongHasan, Syed Azkar U., IDao, Vinh-AiNguyen, Minh PhuongPham, Duy PhongYi, Junsin
DOI
10.1021/acsaem.5c01220
발행일
2025-10-13
유형
Article
저널명
ACS APPLIED ENERGY MATERIALS
8
19
페이지
14086 ~ 14092