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职业迁徙
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Research Interests
Our research is focused on two areas:
(1) Catalysis of the electrochemical reduction of carbon dioxide, and the photochemical "splitting" of carbon dioxide.
(2) "Ultrafast" electron transfer dynamics in inorganic mixed valence complexes.
Catalysis of the electrochemical reduction of carbon dioxide. The goal of these studies is to utilize CO2, an abundant greenhouse gas, for the ultimate manufacture of energy dense liquid fuels. These efforts have concentrated on CO2 activation and reduction of CO2 by chemical, photochemical, and electrochemical means, and the development of catalysts for transforming CO2 to organic products. Catalysts which can manage multiple proton coupled electron transfers (PCETs) to CO2 to form liquid fuels such as methanol are being developed. We are employing semiconductor devices with appropriate band energies to photochemically "split" CO2 to CO and O2.
Our research is focused on two areas:
(1) Catalysis of the electrochemical reduction of carbon dioxide, and the photochemical "splitting" of carbon dioxide.
(2) "Ultrafast" electron transfer dynamics in inorganic mixed valence complexes.
Catalysis of the electrochemical reduction of carbon dioxide. The goal of these studies is to utilize CO2, an abundant greenhouse gas, for the ultimate manufacture of energy dense liquid fuels. These efforts have concentrated on CO2 activation and reduction of CO2 by chemical, photochemical, and electrochemical means, and the development of catalysts for transforming CO2 to organic products. Catalysts which can manage multiple proton coupled electron transfers (PCETs) to CO2 to form liquid fuels such as methanol are being developed. We are employing semiconductor devices with appropriate band energies to photochemically "split" CO2 to CO and O2.
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Thomas Chan,Marija R. Zoric, Anoushka Shandilya, Colin K. Loeb,Jacob A. Barrett,Amy A. Cordones,Clifford P. Kubiak
ACS APPLIED ENERGY MATERIALSno. 6 (2024): 2225-2233
ACS Applied Energy Materials (2024)
Emile E. Deluca,Thomas Chan, James M. Taylor, Byunghoon Lee,Rajiv Ramanujam Prabhakar,Clifford P. Kubiak
ACS CATALYSISno. 3 (2024): 2071-2083
JOURNAL OF PHYSICAL CHEMISTRY Cno. 14 (2023): 6733-6743
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JOURNAL OF PHYSICAL CHEMISTRY Cno. 17 (2023): 8126-8135
Chemical Scienceno. 38 (2022): 11382-11387
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