Efficient organic photovoltaics with improved charge extraction and high short-circuit current

TitleEfficient organic photovoltaics with improved charge extraction and high short-circuit current
Publication TypeJournal Article
Year of Publication2017
AuthorsMohan, M, Nandal, V, Paramadam, S, Reddy, KPrabhakar, Ramkumar, S, Agarwal, S, Gopinath, CS, Nair, PR, Namboothiry, MAG
JournalJournal of Physical Chemistry C
Volume121
Issue10
Pagination5523-5530
Date PublishedMAR
Type of ArticleArticle
ISSN1932-7447
Abstract

Exciton generation, dissociation, free carrier transport, and charge extraction play an important role in the short-circuit current (J(sc)) and power conversion efficiency of an organic bulk heterojunction (BHJ) solar cell (SC). Here we study the impact of band offset at the interfacial layer and the morphology of active layer on the extraction of free carriers. The effects are evaluated on an inverted BHJ SC using zinc oxide (ZnO) as a buffer layer, prepared via two different methods: ZnO nanoparticle dispersed in mixed solvents (ZnO A) and sol-gel method (ZnO B). The device with ZnO A buffer layer improves the charge extraction and J(sc),. The improvement is due to the better band offset and morphology of the blend near the ZnO A/active layer interface. Further, the numerical analysis of current-voltage characteristics illustrates that the morphology at the ZnO A/active layer interface has a more dominant role in improving the performance of the organic photovoltaic than the band offset.

DOI10.1021/acs.jpcc.7b01314
Type of Journal (Indian or Foreign)Foreign
Impact Factor (IF)4.484
Divison category: 
Catalysis and Inorganic Chemistry

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