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Our molecular electron transport studies are directed toward understanding how single molecules can transport charge at the nanoscale, increasing our understanding of how to construct molecular electronic devices.
Our work on molybdoenzymes and models is directed toward understanding how these unique enzymes catalyze a myriad of transformations important to human health and the environment.
QUANTUM INFORMATION SCIENCE
This project aims to understand how complex spin-bearing molecules can be used to understand molecular aspects of quantum information science, including how excited state spin interactions affect technologically relevant excited state processes.
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