Dark carrier dynamics and electrical characteristics of organic solar cells integrated with Ag-SiO2 core-shell nanoparticles

Short circuit current increase in organic solar cells due to increased light absorption, mediated by metal nanoparticles is widely reported, but the underlying influence of changes in electrical properties of dark carriers and trap states in organic solar cells is not well explored. In this work, Ag...

Full description

Bibliographic Details
Main Authors: Chan, K., Elumalai, Naveen Kumar, Tayebjee, M., Uddin, A., Pillai, S.
Format: Journal Article
Published: ELSEVIER SCIENCE SA, PO BOX 564, 1001 LAUSANNE, SWITZERLAND 2017
Online Access:http://hdl.handle.net/20.500.11937/73853
_version_ 1848763115485790208
author Chan, K.
Elumalai, Naveen Kumar
Tayebjee, M.
Uddin, A.
Pillai, S.
author_facet Chan, K.
Elumalai, Naveen Kumar
Tayebjee, M.
Uddin, A.
Pillai, S.
author_sort Chan, K.
building Curtin Institutional Repository
collection Online Access
description Short circuit current increase in organic solar cells due to increased light absorption, mediated by metal nanoparticles is widely reported, but the underlying influence of changes in electrical properties of dark carriers and trap states in organic solar cells is not well explored. In this work, Ag-SiO2 core-shell nanoparticles in an optimized blend with ZnO sol-gel was used to improve device performance of PCPDTBT:PC70BM based organic solar cells and allowed direct examination of the electrical properties while isolating optical effects. Impedance spectroscopy revealed dopant-induced dark carriers from impurities in the active layer or surface trap states. The modified ZnO devices containing dopant-induced dark carriers exhibited enhanced carrier mobility and reduced lifetime compared to reference devices. We attribute the reduced dark carrier lifetime to short-lived and shallow trap states that reduce monomolecular recombination under illuminated operating conditions, thereby improving charge extraction efficiency. A combination of changes in dark carrier dynamics and improvements in electrical properties was responsible for the improved fill factor and efficiency of devices with Ag-SiO2 core-shell nanoparticles.
first_indexed 2025-11-14T10:58:20Z
format Journal Article
id curtin-20.500.11937-73853
institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:58:20Z
publishDate 2017
publisher ELSEVIER SCIENCE SA, PO BOX 564, 1001 LAUSANNE, SWITZERLAND
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-738532019-06-26T05:52:30Z Dark carrier dynamics and electrical characteristics of organic solar cells integrated with Ag-SiO2 core-shell nanoparticles Chan, K. Elumalai, Naveen Kumar Tayebjee, M. Uddin, A. Pillai, S. Short circuit current increase in organic solar cells due to increased light absorption, mediated by metal nanoparticles is widely reported, but the underlying influence of changes in electrical properties of dark carriers and trap states in organic solar cells is not well explored. In this work, Ag-SiO2 core-shell nanoparticles in an optimized blend with ZnO sol-gel was used to improve device performance of PCPDTBT:PC70BM based organic solar cells and allowed direct examination of the electrical properties while isolating optical effects. Impedance spectroscopy revealed dopant-induced dark carriers from impurities in the active layer or surface trap states. The modified ZnO devices containing dopant-induced dark carriers exhibited enhanced carrier mobility and reduced lifetime compared to reference devices. We attribute the reduced dark carrier lifetime to short-lived and shallow trap states that reduce monomolecular recombination under illuminated operating conditions, thereby improving charge extraction efficiency. A combination of changes in dark carrier dynamics and improvements in electrical properties was responsible for the improved fill factor and efficiency of devices with Ag-SiO2 core-shell nanoparticles. 2017 Journal Article http://hdl.handle.net/20.500.11937/73853 10.1016/j.synthmet.2016.11.033 ELSEVIER SCIENCE SA, PO BOX 564, 1001 LAUSANNE, SWITZERLAND restricted
spellingShingle Chan, K.
Elumalai, Naveen Kumar
Tayebjee, M.
Uddin, A.
Pillai, S.
Dark carrier dynamics and electrical characteristics of organic solar cells integrated with Ag-SiO2 core-shell nanoparticles
title Dark carrier dynamics and electrical characteristics of organic solar cells integrated with Ag-SiO2 core-shell nanoparticles
title_full Dark carrier dynamics and electrical characteristics of organic solar cells integrated with Ag-SiO2 core-shell nanoparticles
title_fullStr Dark carrier dynamics and electrical characteristics of organic solar cells integrated with Ag-SiO2 core-shell nanoparticles
title_full_unstemmed Dark carrier dynamics and electrical characteristics of organic solar cells integrated with Ag-SiO2 core-shell nanoparticles
title_short Dark carrier dynamics and electrical characteristics of organic solar cells integrated with Ag-SiO2 core-shell nanoparticles
title_sort dark carrier dynamics and electrical characteristics of organic solar cells integrated with ag-sio2 core-shell nanoparticles
url http://hdl.handle.net/20.500.11937/73853