[1]
|
Solar Water Splitting
2025
DOI:10.1016/B978-0-443-13957-4.00006-9
|
|
|
[2]
|
Photoelectrochemical Water Splitting by Using Nanomaterials: A Review
Journal of Electronic Materials,
2024
DOI:10.1007/s11664-023-10794-z
|
|
|
[3]
|
A review on the photosensitizers used for enhancing the photoelectrochemical performance of hydrogen production with emphasis on a novel toxicity assessment framework
International Journal of Hydrogen Energy,
2024
DOI:10.1016/j.ijhydene.2023.07.116
|
|
|
[4]
|
Materials for Hydrogen Production, Conversion, and Storage
2023
DOI:10.1002/9781119829584.ch3
|
|
|
[5]
|
A review on the photosensitizers used for enhancing the photoelectrochemical performance of hydrogen production with emphasis on a novel toxicity assessment framework
International Journal of Hydrogen Energy,
2023
DOI:10.1016/j.ijhydene.2023.07.116
|
|
|
[6]
|
Nanomaterials for photoelectrochemical water splitting – review
International Journal of Hydrogen Energy,
2018
DOI:10.1016/j.ijhydene.2018.01.099
|
|
|
[7]
|
Nanocomposite CdSe/Cr2Se3: Synthesis, Characterization, and in situ Transformation Study
Zeitschrift für anorganische und allgemeine Chemie,
2015
DOI:10.1002/zaac.201400490
|
|
|
[8]
|
Nanocomposite CdSe/Cr2Se3: Synthesis, Characterization, and in situ Transformation Study
Zeitschrift für anorganische und allgemeine Chemie,
2015
DOI:10.1002/zaac.201400490
|
|
|
[9]
|
One-step synthesis of TiO2/CdS nanocomposites by using microwave irradiation of a TiO2 + Cd2+-mercaptopropionic acid aqueous solution
Journal of the Korean Physical Society,
2014
DOI:10.3938/jkps.64.436
|
|
|
[10]
|
1,4-Hydroquinone is a Hydrogen Reservoir for Fuel Cells and Recyclable via Photocatalytic Water Splitting
Open Journal of Physical Chemistry,
2013
DOI:10.4236/ojpc.2013.32012
|
|
|