Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte

This study presents a simple and effective bio-templated synthesis method for fabricating zinc ferrite (ZnFe2O4) nanofiber photoelectrodes, designed to enhance photoelectrochemical (PEC) activity across different electrolytes. Utilizing kapok fiber as a bio-template, a nanofibril-structured catalyst...

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Published in:JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS
Main Authors: Nasir, Mohd Faizal Md; Salehmin, Mohd Nur Ikhmal; Mamat, Mohamad Hafiz; Kassim, Mohammad B.; Alrokayan, Salman A. H.; Khan, Haseeb A.; Hussain, Tajamul; Mahmood, Mohamad Rusop
Format: Article
Language:English
Published: SPRINGER 2025
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001428325400007
author Nasir
Mohd Faizal Md; Salehmin
Mohd Nur Ikhmal; Mamat
Mohamad Hafiz; Kassim
Mohammad B.; Alrokayan
Salman A. H.; Khan
Haseeb A.; Hussain
Tajamul; Mahmood
Mohamad Rusop
spellingShingle Nasir
Mohd Faizal Md; Salehmin
Mohd Nur Ikhmal; Mamat
Mohamad Hafiz; Kassim
Mohammad B.; Alrokayan
Salman A. H.; Khan
Haseeb A.; Hussain
Tajamul; Mahmood
Mohamad Rusop
Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte
Engineering; Materials Science; Physics
author_facet Nasir
Mohd Faizal Md; Salehmin
Mohd Nur Ikhmal; Mamat
Mohamad Hafiz; Kassim
Mohammad B.; Alrokayan
Salman A. H.; Khan
Haseeb A.; Hussain
Tajamul; Mahmood
Mohamad Rusop
author_sort Nasir
spelling Nasir, Mohd Faizal Md; Salehmin, Mohd Nur Ikhmal; Mamat, Mohamad Hafiz; Kassim, Mohammad B.; Alrokayan, Salman A. H.; Khan, Haseeb A.; Hussain, Tajamul; Mahmood, Mohamad Rusop
Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS
English
Article
This study presents a simple and effective bio-templated synthesis method for fabricating zinc ferrite (ZnFe2O4) nanofiber photoelectrodes, designed to enhance photoelectrochemical (PEC) activity across different electrolytes. Utilizing kapok fiber as a bio-template, a nanofibril-structured catalyst was synthesized and deposited onto fluorine-doped tin oxide (FTO) substrates via electrophoretic deposition, resulting in thin film photoelectrodes. Comprehensive analytical and spectroscopy techniques, including FESEM, EDX, XRD, ATR-FTIR, UV-Vis, BET, and XPS, confirmed the purity and physiochemical properties of the synthesized sample. PEC measurements reveal that the ZnFe2O4 nanofiber photoelectrode achieves significant current densities in different electrolytes, with KOH showing the highest performance followed by Na2SO4, Na2SO3, and NaOH, respectively, at 0.5 M and 0.7 V vs. Ag/AgCl. The preparation of the bio-mimetic ZnFe2O4 nanofiber photocatalyst proves to be a facile, cost-effective, and promising photoanode material for PEC applications, contributing significantly to the advancement of environmentally friendly and efficient energy conversion technologies.
SPRINGER
0957-4522
1573-482X
2025
36
6
10.1007/s10854-025-14387-w
Engineering; Materials Science; Physics

WOS:001428325400007
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001428325400007
title Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte
title_short Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte
title_full Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte
title_fullStr Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte
title_full_unstemmed Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte
title_sort Bio-mimetic ZnFe2O4 nanofibril photocatalysts for photoelectrochemical applications: role of electrolyte
container_title JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS
language English
format Article
description This study presents a simple and effective bio-templated synthesis method for fabricating zinc ferrite (ZnFe2O4) nanofiber photoelectrodes, designed to enhance photoelectrochemical (PEC) activity across different electrolytes. Utilizing kapok fiber as a bio-template, a nanofibril-structured catalyst was synthesized and deposited onto fluorine-doped tin oxide (FTO) substrates via electrophoretic deposition, resulting in thin film photoelectrodes. Comprehensive analytical and spectroscopy techniques, including FESEM, EDX, XRD, ATR-FTIR, UV-Vis, BET, and XPS, confirmed the purity and physiochemical properties of the synthesized sample. PEC measurements reveal that the ZnFe2O4 nanofiber photoelectrode achieves significant current densities in different electrolytes, with KOH showing the highest performance followed by Na2SO4, Na2SO3, and NaOH, respectively, at 0.5 M and 0.7 V vs. Ag/AgCl. The preparation of the bio-mimetic ZnFe2O4 nanofiber photocatalyst proves to be a facile, cost-effective, and promising photoanode material for PEC applications, contributing significantly to the advancement of environmentally friendly and efficient energy conversion technologies.
publisher SPRINGER
issn 0957-4522
1573-482X
publishDate 2025
container_volume 36
container_issue 6
doi_str_mv 10.1007/s10854-025-14387-w
topic Engineering; Materials Science; Physics
topic_facet Engineering; Materials Science; Physics
accesstype
id WOS:001428325400007
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001428325400007
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collection Web of Science (WoS)
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