Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud

Current research reports the fabrication, structural- and optical-characterizations of Argentum (Ag) sensitized Zinc Oxide (ZnO) photoelectrode and their performance in photoelectrochemical (PEC) water splitting application. The optimization of ZnO nanopillars had been successfully carried out and t...

全面介绍

书目详细资料
主要作者: Siti Nur Haslinda , Mohd Daud
格式: Thesis
出版: 2018
主题:
_version_ 1849734805877424128
author Siti Nur Haslinda , Mohd Daud
author_facet Siti Nur Haslinda , Mohd Daud
author_sort Siti Nur Haslinda , Mohd Daud
description Current research reports the fabrication, structural- and optical-characterizations of Argentum (Ag) sensitized Zinc Oxide (ZnO) photoelectrode and their performance in photoelectrochemical (PEC) water splitting application. The optimization of ZnO nanopillars had been successfully carried out and the plasmonic Ag nanoparticles was then subsequently hydrothermally sensitized on ZnO nanopillars through varied Ag+ ions reduction time and AgNO3 concentration. The structural- and optical-properties of all samples were systematically characterized by using several characterization tools. After that, all of the samples were tested for PEC water splitting and linear sweep voltammetry technique was conducted to study the current-voltage behaviour. Additionally, Nyquist plot and Mott-Schottky plot were conducted to probe the electronic properties and charge transfer. Ag nanoparticles sensitized ZnO nanopillars with 30 min Ag+ ions reduction period and 1 mM AgNO3 concentration exhibit the highest photocurrent density (with maximum photoconversion efficiency) which is almost 1.4 times higher than that of ZnO nanopillars. Mott-Schottky analysis indicated that all photoelectrodes exhibit n-type characteristic, where the flat band potential and charge carrier density for all photoelectrodes can be derived hereafter. Ag nanoparticles sensitized ZnO nanopillars with 30 min Ag+ ions reduction period and 1 mM AgNO3 concentration showed the smallest capacitive arc diameter, which indicated that Ag nanoparticles enhanced the electron mobility and reduced the charge-transfer resistance.
format Thesis
id oai:studentsrepo.um.edu.my:8685
institution Universiti Malaya
publishDate 2018
record_format eprints
spelling oai:studentsrepo.um.edu.my:86852021-06-30T18:27:54Z Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud Siti Nur Haslinda , Mohd Daud Q Science (General) QD Chemistry Current research reports the fabrication, structural- and optical-characterizations of Argentum (Ag) sensitized Zinc Oxide (ZnO) photoelectrode and their performance in photoelectrochemical (PEC) water splitting application. The optimization of ZnO nanopillars had been successfully carried out and the plasmonic Ag nanoparticles was then subsequently hydrothermally sensitized on ZnO nanopillars through varied Ag+ ions reduction time and AgNO3 concentration. The structural- and optical-properties of all samples were systematically characterized by using several characterization tools. After that, all of the samples were tested for PEC water splitting and linear sweep voltammetry technique was conducted to study the current-voltage behaviour. Additionally, Nyquist plot and Mott-Schottky plot were conducted to probe the electronic properties and charge transfer. Ag nanoparticles sensitized ZnO nanopillars with 30 min Ag+ ions reduction period and 1 mM AgNO3 concentration exhibit the highest photocurrent density (with maximum photoconversion efficiency) which is almost 1.4 times higher than that of ZnO nanopillars. Mott-Schottky analysis indicated that all photoelectrodes exhibit n-type characteristic, where the flat band potential and charge carrier density for all photoelectrodes can be derived hereafter. Ag nanoparticles sensitized ZnO nanopillars with 30 min Ag+ ions reduction period and 1 mM AgNO3 concentration showed the smallest capacitive arc diameter, which indicated that Ag nanoparticles enhanced the electron mobility and reduced the charge-transfer resistance. 2018-04 Thesis NonPeerReviewed application/pdf http://studentsrepo.um.edu.my/8685/1/Siti_Nurhaslinda.pdf application/pdf http://studentsrepo.um.edu.my/8685/9/haslinda.pdf Siti Nur Haslinda , Mohd Daud (2018) Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud. PhD thesis, University of Malaya. http://studentsrepo.um.edu.my/8685/
spellingShingle Q Science (General)
QD Chemistry
Siti Nur Haslinda , Mohd Daud
Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud
title Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud
title_full Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud
title_fullStr Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud
title_full_unstemmed Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud
title_short Argentum sensitized zinc oxide photoelectrode: Fabrication, characterization and application for photoelectrochemical water splitting / Siti Nur Haslinda Mohd Daud
title_sort argentum sensitized zinc oxide photoelectrode fabrication characterization and application for photoelectrochemical water splitting siti nur haslinda mohd daud
topic Q Science (General)
QD Chemistry
url-record http://studentsrepo.um.edu.my/8685/
work_keys_str_mv AT sitinurhaslindamohddaud argentumsensitizedzincoxidephotoelectrodefabricationcharacterizationandapplicationforphotoelectrochemicalwatersplittingsitinurhaslindamohddaud