Yayınlanmış 1 Ocak 2024 | Sürüm v1
Dergi makalesi Açık

Enhancing performance of polar InGaN-based thin film solar cells through intrinsic layer impact optimization: Numerical modeling

  • 1. Hassan 2 Univ, ENSAM Lab, MPIS Grp, Casablanca 20670, Morocco
  • 2. Sidi Mohamed Ben Abdellah Univ, Fac Sci, LPS, Fes 30000, Morocco
  • 3. Delft Univ Technol, Fac Appl Sci, Dept Imaging Phys ImPhys, NL-2628 CJ Delft, Netherlands

Açıklama

The paper deals with the conception and feasibility of the device structure based on the optimized PIN-(In, Ga)N homojunction solar cells. A new and efficient model combining the most realistic ones considering the impacts of band gap narrowing, collection efficiency, Shockley-Read-Hall recombination, and interface polarization is proposed to examine the solar cells' performance numerically. The functioning processes of n-In0.42Ga0.58N/i-(In, Ga)N/p-In0.42Ga0.58N solar cells at room temperature were investigated by calculating their characteristics for the AM1.5D, AM1.5G, and AM0 American Society for Testing and Materials experimental data. Our results show that the indium content, thickness, and defect density of the intrinsic layer strongly influence the characteristics of the InGaN solar cells. As the In-mole fraction increases, Voc, FF and efficiency diminish to reach an independent regime for high In-content. A higher-quality 2 mu m - In0.43Ga0.57N for 1014cm- 3 defect concentration can exhibit as high an efficiency as congruent to 11.3%, dropping to congruent to 4.12% for 1016cm- 3 one.

Dosyalar

bib-31eefe8c-fa58-4d9f-8cbd-4dacb01fa98c.txt

Dosyalar (242 Bytes)

Ad Boyut Hepisini indir
md5:9043676a5982c02e81c1ee0994c24786
242 Bytes Ön İzleme İndir