Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water

Hydrogen is still considered as one of the cleanest energy to date. In order to achieve a sustainable process for the hydrogen production, photocatalytic water splitting to produce hydrogen would be a suitable approach . However, due to the low efficiency and lack of stability, the developments of a...

Full description

Saved in:
Bibliographic Details
Main Author: Leni Yuliati, Leni Yuliati
Format: Conference or Workshop Item
Published: 2015
Subjects:
Online Access:http://eprints.utm.my/id/eprint/61622/
http://iopscience.iop.org/issue/1757-899X/107/1
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Teknologi Malaysia
id my.utm.61622
record_format eprints
spelling my.utm.616222017-08-22T07:06:09Z http://eprints.utm.my/id/eprint/61622/ Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water Leni Yuliati, Leni Yuliati QD Chemistry Hydrogen is still considered as one of the cleanest energy to date. In order to achieve a sustainable process for the hydrogen production, photocatalytic water splitting to produce hydrogen would be a suitable approach . However, due to the low efficiency and lack of stability, the developments of active and stable photocatalysts, especially those that can work under visible light irradiation are still highly required . On the other hand, cadmium zinc sulfide has been recognized as an active visible light-driven photocatalyst for hydrogen production . Unfortunately, the cadmium zinc sulfide is usually not stable. In order to enhance not only the activity but also the stability of the cadmium zinc sulfide photocatalyst, various modifications were carried out by addition of tin, copper, or silver via hydrothermal and co-precipitation methods [1-3] . It was demonstrated that the hydrothermal method was better than the co-precipitation method to prepare the modified cadmium zinc sulfide photocatalysts. The addition of optimum amount of tin, copper, or silver by hydrothermal method successfully improved both activity and stability of the cadmium zinc sulfide photocatalyst for hydrogen production under visible light irradiation. several reasons were proposed for such enhancements, which were high crystallinity, good absorption at visible light region (narrow band gap energy), and suppression of electron -hole recombination. 2015 Conference or Workshop Item PeerReviewed Leni Yuliati, Leni Yuliati (2015) Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water. In: 10th International Joint Conference on Chemistry (JCC) 2015, 8-9 Sep, 2015, Indonesia. http://iopscience.iop.org/issue/1757-899X/107/1
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QD Chemistry
spellingShingle QD Chemistry
Leni Yuliati, Leni Yuliati
Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water
description Hydrogen is still considered as one of the cleanest energy to date. In order to achieve a sustainable process for the hydrogen production, photocatalytic water splitting to produce hydrogen would be a suitable approach . However, due to the low efficiency and lack of stability, the developments of active and stable photocatalysts, especially those that can work under visible light irradiation are still highly required . On the other hand, cadmium zinc sulfide has been recognized as an active visible light-driven photocatalyst for hydrogen production . Unfortunately, the cadmium zinc sulfide is usually not stable. In order to enhance not only the activity but also the stability of the cadmium zinc sulfide photocatalyst, various modifications were carried out by addition of tin, copper, or silver via hydrothermal and co-precipitation methods [1-3] . It was demonstrated that the hydrothermal method was better than the co-precipitation method to prepare the modified cadmium zinc sulfide photocatalysts. The addition of optimum amount of tin, copper, or silver by hydrothermal method successfully improved both activity and stability of the cadmium zinc sulfide photocatalyst for hydrogen production under visible light irradiation. several reasons were proposed for such enhancements, which were high crystallinity, good absorption at visible light region (narrow band gap energy), and suppression of electron -hole recombination.
format Conference or Workshop Item
author Leni Yuliati, Leni Yuliati
author_facet Leni Yuliati, Leni Yuliati
author_sort Leni Yuliati, Leni Yuliati
title Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water
title_short Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water
title_full Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water
title_fullStr Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water
title_full_unstemmed Enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water
title_sort enhancing the activity and stability of cadmium zinc sulfide photocatalyst for hydrogen production from water
publishDate 2015
url http://eprints.utm.my/id/eprint/61622/
http://iopscience.iop.org/issue/1757-899X/107/1
_version_ 1643655221517221888