Skip to main navigation Skip to search Skip to main content

Recent advances in electrodeposition of interfacial buffer layers in chalcopyrite-based solar cells

  • E. Chassaing
  • , N. Naghavi
  • , G. Rocha
  • , V. Bockelee
  • , E. Leite
  • , M. Bouttemy
  • , J. Vigneron
  • , A. Etcheberry
  • , D. Lincot
  • Centre national de la recherche scientifique
  • Institut Lavoisier de Versailles

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Soft chemical processes such as screen printing, sol-gel, electrochemical or chemical bath-deposition, enable low cost and easily scalable processes for thin layer solar cells. For the CIGSe based solar cells, with the standard Mo/Cu(In,Ga)Se2/CdS/i-ZnO/n+-ZnO structure, all layers of the p-n heterojunction and the transparent conductive oxide window can be grown by aqueous solution processes. Based on our previous work and the literature it was shown that cells with electrodeposited Cu(In,Ga)(S,Se)2-based absorbers can present conversion efficiencies up to 13.8 %. When ZnO:Cl window layer is deposited by electrodeposition with a coevaporated CIGS-based absorber, efficiency above 15% can be reached. In this work we will mainly focus on the application of this soft deposition technique for the preparation of the buffer layer. Electrochemical investigation of In-S layers is carried out. XPS analysis show the presence of both S and O. Conversion efficiencies of complete devices up to 9.5 % are obtained.

Original languageEnglish
Title of host publicationProcesses at the Semiconductor-Solution Interface 4
PublisherElectrochemical Society Inc.
Pages127-134
Number of pages8
Edition8
ISBN (Electronic)9781566778695
ISBN (Print)9781607682196
DOIs
Publication statusPublished - 1 Jan 2011

Publication series

NameECS Transactions
Number8
Volume35
ISSN (Print)1938-5862
ISSN (Electronic)1938-6737

Fingerprint

Dive into the research topics of 'Recent advances in electrodeposition of interfacial buffer layers in chalcopyrite-based solar cells'. Together they form a unique fingerprint.

Cite this