Cited time in webofscience Cited time in scopus

The characteristics of Cu(In, Ga)Se 2 thin-film solar cells by bandgap grading

Title
The characteristics of Cu(In, Ga)Se 2 thin-film solar cells by bandgap grading
Author(s)
Kim, Young-illYang, Kee-JeongKim, Se-YunKang, Jin-KyuKim, JuranJo, WilliamYoo, HyesunKim, JunHoKim, Dae-Hwan
Issued Date
2019-08
Citation
Journal of Industrial and Engineering Chemistry, v.76, pp.437 - 442
Type
Article
Author Keywords
Bandgap gradingCIGSeDefectSolar cellSurface potential
Keywords
HIGH-EFFICIENCYSE VAPORDEVICEPHOTOCURRENTGALLIUMCUINSE2INDIUMPANEL
ISSN
1226-086X
Abstract
We investigated the characteristics of Cu(In, Ga)Se 2 solar cells with bandgap (E g ) grading. Two precursor types were employed: Mo/Cu 0.75 Ga 0.25 /In/Ga 2 Se 3 (CIGSe-1) and Mo/Cu/In/Ga 2 Se 3 (CIGSe-2). In CIGSe-1, the range of depths with a high Ga content is wider than that in CIGSe-2; thus, the region in which the main electron-trapping clusters and high-population deep donor defects can form is larger, and the defect density is higher. In the defect energy level range, various other defects and defect clusters exist with a defect density of 2.83 × 10 15 cm −3 within the CIGS-1 absorber layer and 2.37 × 10 15 cm −3 within the CIGS-2 absorber layer. The average efficiency values are 5.71% for CIGSe-1 and 6.82% for CIGSe-2. Additionally, the average V OC deficit (E g /q − V OC ) values are 0.758 V for CIGSe-1 and 0.731 V for CIGSe-2. As a result, in the 7 CIGSe-2 samples, the open-circuit voltage and efficiencies are improved. Thus, it is demonstrated that appropriate E g grading in a CIGSe layer with a wider E g on the back surface can result in improved performance. © 2019 The Korean Society of Industrial and Engineering Chemistry
URI
http://hdl.handle.net/20.500.11750/10052
DOI
10.1016/j.jiec.2019.04.010
Publisher
Korean Society of Industrial Engineering Chemistry
Related Researcher
Files in This Item:

There are no files associated with this item.

Appears in Collections:
Division of Energy Technology 1. Journal Articles
Convergence Research Center for Solar Energy 1. Journal Articles

qrcode

  • twitter
  • facebook
  • mendeley

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.

BROWSE