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Kong, Calton J.
9
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Online (9)
Mediatypes
Articles (Online) (5)
OpenAccess-fulltext (4)
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1
Importance of Site Diversity and Connectivity in Electroche..:
Kim, Chansol
;
Govindarajan, Nitish
;
Hemenway, Sydney
...
ACS Catalysis. 14 (2024) 5 - p. 3128-3138 , 2024
Link:
https://doi.org/10.1021/..
?
2
Role of Mass Transport in Electrochemical CO2 Reduction to ..:
Chan, Thomas
;
Kong, Calton J.
;
King, Alex J.
...
ACS Applied Energy Materials. 7 (2024) 8 - p. 3091-3098 , 2024
Link:
https://doi.org/10.1021/..
?
3
Electrochemical CO2 reduction passes the acid test:
Kong, Calton J.
;
Ager, Joel W.
Nature Nanotechnology. , 2023
Link:
https://doi.org/10.1038/..
?
4
Electrochemical conversion of carbon dioxide to methyl form..:
Kong, Calton J.
;
Prabhakar, Rajiv Ramanujam
;
Ager, Joel W.
Chem Catalysis. 2 (2022) 9 - p. 2124-2126 , 2022
Link:
https://doi.org/10.1016/..
?
5
Design principles of tandem cascade photoelectrochemical de..:
Kong, Calton J.
;
Warren, Emily L.
;
Greenaway, Ann L.
...
Sustainable Energy & Fuels. 5 (2021) 24 - p. 6361-6371 , 2021
Link:
https://doi.org/10.1039/..
?
6
Design Principles of Tandem Photoelectrochemical Devices:
Kong, Calton
;
Ager, Joel
;
Tamboli, Adele
...
doi:10.5281/zenodo.5593773. , 2021
Link:
https://zenodo.org/recor..
?
7
Design principles of tandem cascade photoelectrochemical de..:
Kong, Calton J
;
Warren, Emily L
;
Greenaway, Ann L
...
qt1nc7z4c2. , 2021
Link:
https://escholarship.org..
?
8
Importance of Site Diversity and Connectivity in Electroche..:
Chansol Kim
;
Nitish Govindarajan
;
Sydney Hemenway
...
doi:10.1021/acscatal.3c05904.s001. , 1753
Link:
https://doi.org/10.1021/..
?
9
Importance of Site Diversity and Connectivity in Electroche..:
Chansol Kim
;
Nitish Govindarajan
;
Sydney Hemenway
...
doi:10.1021/acscatal.3c05904.s001. , 1753
Link:
https://doi.org/10.1021/..
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