Prospects of Back Surface Field Effect in Ultra-Thin High-Efficiency CdS/CdTe Solar Cells from Numerical Modeling. (2nd December 2010)
- Record Type:
- Journal Article
- Title:
- Prospects of Back Surface Field Effect in Ultra-Thin High-Efficiency CdS/CdTe Solar Cells from Numerical Modeling. (2nd December 2010)
- Main Title:
- Prospects of Back Surface Field Effect in Ultra-Thin High-Efficiency CdS/CdTe Solar Cells from Numerical Modeling
- Authors:
- Amin, Nowshad
Matin, M. A.
Aliyu, M. M.
Alghoul, M. A.
Karim, M. R.
Sopian, K. - Other Names:
- Yakuphanoglu Fahrettin Academic Editor.
- Abstract:
- Abstract : Polycrystalline CdTe shows greater promises for the development of cost-effective, efficient, and reliable thin film solar cells. Results of numerical analysis using AMPS-1D simulator in exploring the possibility of ultrathin, high efficiency, and stable CdS/CdTe cells are presented. The conventional baseline case structure of CdS/CdTe cell has been explored with reduced CdTe absorber and CdS window layer thickness, where 1 μ m thin CdTe and 50 nm CdS layers showed reasonable efficiencies over 15%. The viability of 1 μ m CdTe absorber layer together with possible back surface field (BSF) layers to reduce minority carrier recombination loss at the back contact in ultra thin CdS/CdTe cells was investigated. Higher bandgap material like ZnTe and low bandgap materials like Sb2 Te3 and As2 Te3 as BSF were inserted to reduce the holes barrier height in the proposed ultra thin CdS/CdTe cells. The proposed structure of SnO2 /Zn2 SnO4 /CdS/CdTe/As2 Te3 /Cu showed the highest conversion efficiency of 18.6% ( Voc = 0.92 V, Jsc = 24.97 mA/cm 2, and FF = 0.81). However, other proposed structures such as SnO2 /Zn2 SnO4 /CdS/CdTe/Sb2 Te3 /Mo and SnO2 /Zn2 SnO4 /CdS/CdTe/ZnTe/Al have also shown better stability at higher operating temperatures with acceptable efficiencies. Moreover, it was found that the cells normalized efficiency linearly decreased with the increased operating temperature with relatively lower gradient, which eventually indicates better stability of theAbstract : Polycrystalline CdTe shows greater promises for the development of cost-effective, efficient, and reliable thin film solar cells. Results of numerical analysis using AMPS-1D simulator in exploring the possibility of ultrathin, high efficiency, and stable CdS/CdTe cells are presented. The conventional baseline case structure of CdS/CdTe cell has been explored with reduced CdTe absorber and CdS window layer thickness, where 1 μ m thin CdTe and 50 nm CdS layers showed reasonable efficiencies over 15%. The viability of 1 μ m CdTe absorber layer together with possible back surface field (BSF) layers to reduce minority carrier recombination loss at the back contact in ultra thin CdS/CdTe cells was investigated. Higher bandgap material like ZnTe and low bandgap materials like Sb2 Te3 and As2 Te3 as BSF were inserted to reduce the holes barrier height in the proposed ultra thin CdS/CdTe cells. The proposed structure of SnO2 /Zn2 SnO4 /CdS/CdTe/As2 Te3 /Cu showed the highest conversion efficiency of 18.6% ( Voc = 0.92 V, Jsc = 24.97 mA/cm 2, and FF = 0.81). However, other proposed structures such as SnO2 /Zn2 SnO4 /CdS/CdTe/Sb2 Te3 /Mo and SnO2 /Zn2 SnO4 /CdS/CdTe/ZnTe/Al have also shown better stability at higher operating temperatures with acceptable efficiencies. Moreover, it was found that the cells normalized efficiency linearly decreased with the increased operating temperature with relatively lower gradient, which eventually indicates better stability of the proposed ultra thin CdS/CdTe cells. … (more)
- Is Part Of:
- International journal of photoenergy. Volume 2010(2010)
- Journal:
- International journal of photoenergy
- Issue:
- Volume 2010(2010)
- Issue Display:
- Volume 2010, Issue 2010 (2010)
- Year:
- 2010
- Volume:
- 2010
- Issue:
- 2010
- Issue Sort Value:
- 2010-2010-2010-0000
- Page Start:
- Page End:
- Publication Date:
- 2010-12-02
- Subjects:
- Photochemistry -- Periodicals
Photobiology -- Periodicals
Chemistry, Physical and theoretical -- Periodicals
Photochimie
Photobiologie
Chimie physique et théorique
Chemistry, Physical and theoretical
Photobiology
Photochemistry
Electronic journals
Periodicals
541.35 - Journal URLs:
- https://www.hindawi.com/journals/ijp/ ↗
http://www.hindawi.com/GetJournal.aspx?journal=ijp ↗ - DOI:
- 10.1155/2010/578580 ↗
- Languages:
- English
- ISSNs:
- 1110-662X
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD Digital store
- Ingest File:
- 10377.xml