Ananta Dey
Postdoctoral position at Department of Materials Science and Engineering; Nanotechnology and Functional Materials
- E-mail:
- ananta.dey@angstrom.uu.se
- Visiting address:
- Ångströmlaboratoriet, Regementsvägen 10
- Postal address:
- Box 35
751 03 UPPSALA
Publications
Recent publications
-
Hydrogen evolution with hot electrons on a plasmonic-molecular catalyst hybrid system
Part of Nature Communications, 2024
- DOI for Hydrogen evolution with hot electrons on a plasmonic-molecular catalyst hybrid system
- Download full text (pdf) of Hydrogen evolution with hot electrons on a plasmonic-molecular catalyst hybrid system
-
Exploiting hot electrons from a plasmon nanohybrid system for the photoelectroreduction of CO2
Part of Communications Chemistry, 2024
- DOI for Exploiting hot electrons from a plasmon nanohybrid system for the photoelectroreduction of CO2
- Download full text (pdf) of Exploiting hot electrons from a plasmon nanohybrid system for the photoelectroreduction of CO2
-
Ultrafast Infrared-to-Visible Photon Upconversion on Plasmon/TiO2 Solid Films
Part of The Journal of Physical Chemistry Letters, p. 6255-6262, 2023
- DOI for Ultrafast Infrared-to-Visible Photon Upconversion on Plasmon/TiO2 Solid Films
- Download full text (pdf) of Ultrafast Infrared-to-Visible Photon Upconversion on Plasmon/TiO2 Solid Films
All publications
Articles in journal
-
Hydrogen evolution with hot electrons on a plasmonic-molecular catalyst hybrid system
Part of Nature Communications, 2024
- DOI for Hydrogen evolution with hot electrons on a plasmonic-molecular catalyst hybrid system
- Download full text (pdf) of Hydrogen evolution with hot electrons on a plasmonic-molecular catalyst hybrid system
-
Exploiting hot electrons from a plasmon nanohybrid system for the photoelectroreduction of CO2
Part of Communications Chemistry, 2024
- DOI for Exploiting hot electrons from a plasmon nanohybrid system for the photoelectroreduction of CO2
- Download full text (pdf) of Exploiting hot electrons from a plasmon nanohybrid system for the photoelectroreduction of CO2
-
Ultrafast Infrared-to-Visible Photon Upconversion on Plasmon/TiO2 Solid Films
Part of The Journal of Physical Chemistry Letters, p. 6255-6262, 2023
- DOI for Ultrafast Infrared-to-Visible Photon Upconversion on Plasmon/TiO2 Solid Films
- Download full text (pdf) of Ultrafast Infrared-to-Visible Photon Upconversion on Plasmon/TiO2 Solid Films