The proposed 2D photocatalysts are expect to change the traditional way of design artificial photocatalysts. Expected outcomes of this project include fabrication of soft 2D plasmonic photocatalyst with large-area, ultrathin thickness, and high flexibility, understanding their plasmonic enhancement mechanisms, and construction of artificial leaves to perform the solar-to-chemical conversion, which can provide significant benefits, such as creating new-generation of soft energy devices and advance Australian expertise in photochemistry, self-assembly and functional nanomaterials.
The proposed 2D photocatalysts are expect to change the traditional way of design artificial photocatalysts. Expected outcomes of this project include fabrication of soft 2D plasmonic photocatalyst with large-area, ultrathin thickness, and high flexibility, understanding their plasmonic enhancement mechanisms, and construction of artificial leaves to perform the solar-to-chemical conversion, which can provide significant benefits, such as creating new-generation of soft energy devices and advance Australian expertise in photochemistry, self-assembly and functional nanomaterials.
A stipend of $33,826 for 3 years.
A stipend of $33,826 for 3 years.
Open now.
Open now.
8 September 2024.
8 September 2024.
One (1).
One (1).
Applicants require a Bachelors Degree with Honours (or equivalent) in either Chemistry or Physics.
Applicants require a Bachelors Degree with Honours (or equivalent) in either Chemistry or Physics.
To apply, please contact Daniel Gomez by emailing [email protected] .
To apply, please contact Daniel Gomez by emailing [email protected] .
For more information, please contact Daniel Gomez by emailing [email protected] .
For more information, please contact Daniel Gomez by emailing [email protected] .
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