Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate

Photoelectrochemical (PEC) characteristics of CdTe film electrodes, known to have low conversion efficiency when used in their pristine form, can be significantly enhanced by carefully controlling their annealing temperature and cooling rate. Pristine CdTe films were electrodeposited onto FTO/Glass...

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Main Authors: Zyoud, Ahed H., Abdelhadi, Doa' H., Helal, Mohamed H.S., Zyoud, Samer H., Bsharat, Heba, Abu-Alrob, Sohaib M., Sabli, Nordin, Qamhieh, Naser, Hajamohideen, Abdul Razack, Hilala, Hikmat S.
Format: Article
Published: Elsevier GmbH 2019
Online Access:http://psasir.upm.edu.my/id/eprint/79691/
https://www.sciencedirect.com/science/article/pii/S0030402619311167
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spelling my.upm.eprints.796912022-10-19T02:15:22Z http://psasir.upm.edu.my/id/eprint/79691/ Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate Zyoud, Ahed H. Abdelhadi, Doa' H. Helal, Mohamed H.S. Zyoud, Samer H. Bsharat, Heba Abu-Alrob, Sohaib M. Sabli, Nordin Qamhieh, Naser Hajamohideen, Abdul Razack Hilala, Hikmat S. Photoelectrochemical (PEC) characteristics of CdTe film electrodes, known to have low conversion efficiency when used in their pristine form, can be significantly enhanced by carefully controlling their annealing temperature and cooling rate. Pristine CdTe films were electrodeposited onto FTO/Glass substrates which were used as anodes. To reach films with optimal characteristics, different applied preparation potentials were intentionally examined, namely 1.0, 1.1 and 1.2 V, vs. Ag/AgCl reference electrode (or 1.2, 1.3 and 1.4 V NHE, respectively) where the 1.1 V applied potential showed best PEC characteristics, and was thus followed unless otherwise stated. To study effect of annealing temperature, three temperatures (150, 200 and 250 ºC) were attempted to enhance PEC characteristics of the deposited films. Effect of cooling rate, on PEC performance of pre-annealed films, was also studied using quenching and slow cooling. Films quenched from annealing at all temperatures showed lower PEC performance compared to non-annealed electrode. Film electrodes slowly cooled from 150 or 200 ºC show enhanced PEC performance compared to quenched or non-annealed films. Film slowly cooled from 250 ºC exhibited lower PEC performance than the quenched counterpart. Annealing at 250 ºC lowered PEC for both quenching and slow cooling. As a low band gap semiconductor film electrode, it is recommended to slowly cool CdTe from low annealing temperatures, and to quickly cool them from relatively higher annealing temperature. The annealing temperature and cooling rate effects on CdTe film PEC performance are attributed to their effects on other physical characteristics, namely crystallinity, morphology and chemical composition. The optimal conversion efficiency (6.9%) was observed for film deposited at 1.1 V applied potential when annealed at 200 ºC and slowly cooled to room temperature. Elsevier GmbH 2019 Article PeerReviewed Zyoud, Ahed H. and Abdelhadi, Doa' H. and Helal, Mohamed H.S. and Zyoud, Samer H. and Bsharat, Heba and Abu-Alrob, Sohaib M. and Sabli, Nordin and Qamhieh, Naser and Hajamohideen, Abdul Razack and Hilala, Hikmat S. (2019) Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate. Optik, 197. pp. 1-11. ISSN 0030-4026; ESSN: 1618-1336 https://www.sciencedirect.com/science/article/pii/S0030402619311167 10.1016/j.ijleo.2019.163220
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description Photoelectrochemical (PEC) characteristics of CdTe film electrodes, known to have low conversion efficiency when used in their pristine form, can be significantly enhanced by carefully controlling their annealing temperature and cooling rate. Pristine CdTe films were electrodeposited onto FTO/Glass substrates which were used as anodes. To reach films with optimal characteristics, different applied preparation potentials were intentionally examined, namely 1.0, 1.1 and 1.2 V, vs. Ag/AgCl reference electrode (or 1.2, 1.3 and 1.4 V NHE, respectively) where the 1.1 V applied potential showed best PEC characteristics, and was thus followed unless otherwise stated. To study effect of annealing temperature, three temperatures (150, 200 and 250 ºC) were attempted to enhance PEC characteristics of the deposited films. Effect of cooling rate, on PEC performance of pre-annealed films, was also studied using quenching and slow cooling. Films quenched from annealing at all temperatures showed lower PEC performance compared to non-annealed electrode. Film electrodes slowly cooled from 150 or 200 ºC show enhanced PEC performance compared to quenched or non-annealed films. Film slowly cooled from 250 ºC exhibited lower PEC performance than the quenched counterpart. Annealing at 250 ºC lowered PEC for both quenching and slow cooling. As a low band gap semiconductor film electrode, it is recommended to slowly cool CdTe from low annealing temperatures, and to quickly cool them from relatively higher annealing temperature. The annealing temperature and cooling rate effects on CdTe film PEC performance are attributed to their effects on other physical characteristics, namely crystallinity, morphology and chemical composition. The optimal conversion efficiency (6.9%) was observed for film deposited at 1.1 V applied potential when annealed at 200 ºC and slowly cooled to room temperature.
format Article
author Zyoud, Ahed H.
Abdelhadi, Doa' H.
Helal, Mohamed H.S.
Zyoud, Samer H.
Bsharat, Heba
Abu-Alrob, Sohaib M.
Sabli, Nordin
Qamhieh, Naser
Hajamohideen, Abdul Razack
Hilala, Hikmat S.
spellingShingle Zyoud, Ahed H.
Abdelhadi, Doa' H.
Helal, Mohamed H.S.
Zyoud, Samer H.
Bsharat, Heba
Abu-Alrob, Sohaib M.
Sabli, Nordin
Qamhieh, Naser
Hajamohideen, Abdul Razack
Hilala, Hikmat S.
Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate
author_facet Zyoud, Ahed H.
Abdelhadi, Doa' H.
Helal, Mohamed H.S.
Zyoud, Samer H.
Bsharat, Heba
Abu-Alrob, Sohaib M.
Sabli, Nordin
Qamhieh, Naser
Hajamohideen, Abdul Razack
Hilala, Hikmat S.
author_sort Zyoud, Ahed H.
title Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate
title_short Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate
title_full Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate
title_fullStr Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate
title_full_unstemmed Enhancement of electromagnetically deposited pristine CdTe film electrode photoelectrochemical characteristics by annealing temperature and cooling rate
title_sort enhancement of electromagnetically deposited pristine cdte film electrode photoelectrochemical characteristics by annealing temperature and cooling rate
publisher Elsevier GmbH
publishDate 2019
url http://psasir.upm.edu.my/id/eprint/79691/
https://www.sciencedirect.com/science/article/pii/S0030402619311167
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score 13.18916