Oxide semiconductors for solar to chemical energy conversion: nanotechnology approach

Link to publisher's homepage at http://link.springer.com/

Saved in:
Bibliographic Details
Main Authors: Shamsul, Baharin Jamaludin, Prof. Dr., Mohd Awang, Idris, Dr., Zul Azhar, Zahid Jamal, Dato' ,Prof. Dr., Nafarizal, Nayan, Dr., Abdul Kadir, Othman, Dr., Mohd Zainizan, Sahdan, Dr., Mohamad Pauzi, Zakaria, M, Ionescu, Janusz, Nowotny, Prof.
Other Authors: sbaharin@unimap.edu.my
Format: Article
Language:English
Published: Institute for Ionics 2014
Subjects:
Online Access:http://dspace.unimap.edu.my:80/dspace/handle/123456789/34664
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Malaysia Perlis
Language: English
id my.unimap-34664
record_format dspace
spelling my.unimap-346642014-05-23T02:37:07Z Oxide semiconductors for solar to chemical energy conversion: nanotechnology approach Shamsul, Baharin Jamaludin, Prof. Dr. Mohd Awang, Idris, Dr. Zul Azhar, Zahid Jamal, Dato' ,Prof. Dr. Nafarizal, Nayan, Dr. Abdul Kadir, Othman, Dr. Mohd Zainizan, Sahdan, Dr. Mohamad Pauzi, Zakaria M, Ionescu Janusz, Nowotny, Prof. sbaharin@unimap.edu.my idrma@um.edu.my abdkadir@salam.uitm.edu J.Nowotny@uws.edu.au Nanotechnology Solar energy Solar hydrogen fuel Titanium dioxide Water purification Link to publisher's homepage at http://link.springer.com/ The present work considers the application of oxide semiconductors in the conversion of solar energy into the chemical energy required for water purification (removal of microbial cells and toxic organic compounds from water) and the generation of solar hydrogen fuel by photoelectrochemical water splitting. The first part of this work considers the concept of solar energy conversion by oxide semiconductors and the key performance-related properties, including electronic structure, charge transport, flat band potential and surface properties, which are responsible to the reactivity and photoreactivity of oxides with water. The performance of oxide systems for solar energy conversion is briefly considered in terms of an electronic factor. The progress of research in the formation of systems with high performance is considered in terms of specific aspects of nanotechnology, leading to the formation of systems with high performance. The nanotechnology approach in the development of high-performance photocatalysts is considered in terms of the effect of surface energy associated with the formation of nanostructured system on the formation of surface structures that exhibit outstanding properties. The unresolved problems that should be tackled in better understanding of the effect of nanostructures on properties and performance of oxide semiconductors in solar energy conversion are discussed. This part is summarised by a list of unresolved problems of crucial importance in the formation of systems with enhanced performance. This work also formulates the questions that must be addressed in order to overcome the hurdles in the formation of oxide semiconductors with high performance in water purification and the generation of solar fuel. The research strategy in the development of oxide systems with high performance, including photocatalysts for solar water purification and photoelectrodes for photoelectrochemical water splitting, is considered. The considerations are focused on the systems based on titanium dioxide of different defect disorder as well as its solid solutions and composites. 2014-05-23T02:37:06Z 2014-05-23T02:37:06Z 2014 Article Ionics, vol.20 (4), 2014, pages 581-592 0947-7047 http://link.springer.com/article/10.1007%2Fs11581-013-1007-x http://dspace.unimap.edu.my:80/dspace/handle/123456789/34664 10.1007/s11581-013-1007-x en Institute for Ionics
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Nanotechnology
Solar energy
Solar hydrogen fuel
Titanium dioxide
Water purification
spellingShingle Nanotechnology
Solar energy
Solar hydrogen fuel
Titanium dioxide
Water purification
Shamsul, Baharin Jamaludin, Prof. Dr.
Mohd Awang, Idris, Dr.
Zul Azhar, Zahid Jamal, Dato' ,Prof. Dr.
Nafarizal, Nayan, Dr.
Abdul Kadir, Othman, Dr.
Mohd Zainizan, Sahdan, Dr.
Mohamad Pauzi, Zakaria
M, Ionescu
Janusz, Nowotny, Prof.
Oxide semiconductors for solar to chemical energy conversion: nanotechnology approach
description Link to publisher's homepage at http://link.springer.com/
author2 sbaharin@unimap.edu.my
author_facet sbaharin@unimap.edu.my
Shamsul, Baharin Jamaludin, Prof. Dr.
Mohd Awang, Idris, Dr.
Zul Azhar, Zahid Jamal, Dato' ,Prof. Dr.
Nafarizal, Nayan, Dr.
Abdul Kadir, Othman, Dr.
Mohd Zainizan, Sahdan, Dr.
Mohamad Pauzi, Zakaria
M, Ionescu
Janusz, Nowotny, Prof.
format Article
author Shamsul, Baharin Jamaludin, Prof. Dr.
Mohd Awang, Idris, Dr.
Zul Azhar, Zahid Jamal, Dato' ,Prof. Dr.
Nafarizal, Nayan, Dr.
Abdul Kadir, Othman, Dr.
Mohd Zainizan, Sahdan, Dr.
Mohamad Pauzi, Zakaria
M, Ionescu
Janusz, Nowotny, Prof.
author_sort Shamsul, Baharin Jamaludin, Prof. Dr.
title Oxide semiconductors for solar to chemical energy conversion: nanotechnology approach
title_short Oxide semiconductors for solar to chemical energy conversion: nanotechnology approach
title_full Oxide semiconductors for solar to chemical energy conversion: nanotechnology approach
title_fullStr Oxide semiconductors for solar to chemical energy conversion: nanotechnology approach
title_full_unstemmed Oxide semiconductors for solar to chemical energy conversion: nanotechnology approach
title_sort oxide semiconductors for solar to chemical energy conversion: nanotechnology approach
publisher Institute for Ionics
publishDate 2014
url http://dspace.unimap.edu.my:80/dspace/handle/123456789/34664
_version_ 1643797558613508096