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Research Interests
Electrocatalysis: The research in this area explores the fundamental advantages and limitations of the monolayer catalyst concept for design of highly active fuel cell anodes/cathodes. Our interest is centered to develop a better understanding of the effects of substrate (electronic effect and epitaxial strain) and the monolayer morphology on catalyst monolayer activity. The evaluation of these effects in different electrochemical reactions is one of the primary goals.Thebroader interest is to address the stability of monolayer catalystsand to identify the fundamental processes that are important for the catalyst monolayer morphology change, redistribution and longevity in particular electrochemical reactions.
Sensors: The research in this area is focused on electrochemical interface as the natural transducer for sensing of different phenomena including, organic adsorption, DNA, protein sensing, gene recognition, bio-separation etc….The current efforts that are pursued in our group are the work on ultrasound sensor design using the high surface/volume ratio electrodes as the ultrasound transducers and the studies of phase separated magnetic/nonmagnetic nano-materials as the magnetic field sensors.
Electrocatalysis: The research in this area explores the fundamental advantages and limitations of the monolayer catalyst concept for design of highly active fuel cell anodes/cathodes. Our interest is centered to develop a better understanding of the effects of substrate (electronic effect and epitaxial strain) and the monolayer morphology on catalyst monolayer activity. The evaluation of these effects in different electrochemical reactions is one of the primary goals.Thebroader interest is to address the stability of monolayer catalystsand to identify the fundamental processes that are important for the catalyst monolayer morphology change, redistribution and longevity in particular electrochemical reactions.
Sensors: The research in this area is focused on electrochemical interface as the natural transducer for sensing of different phenomena including, organic adsorption, DNA, protein sensing, gene recognition, bio-separation etc….The current efforts that are pursued in our group are the work on ultrasound sensor design using the high surface/volume ratio electrodes as the ultrasound transducers and the studies of phase separated magnetic/nonmagnetic nano-materials as the magnetic field sensors.
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论文共 157 篇作者统计合作学者相似作者
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Nikhil M. Chaudhari, Fernando Alvarez Ramirez,Nathaly Castaneda,Stanko R. Brankovic, Francisco C. Robles Hernandez
CRYSTAL GROWTH & DESIGNno. 4 (2024): 1560-1569
Accounts of chemical researchno. 13 (2023): 1685-1686
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ECS Meeting Abstractsno. 23 (2022): 1187-1187
ECS Meeting Abstractsno. 49 (2022): 2050-2050
Journal of The Electrochemical Societyno. 1 (2022)
ECS Meeting Abstractsno. 24 (2022): 1008-1008
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2022 IEEE Photonics Conference (IPC)pp.1-2, (2022)
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