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Paul Nguyen

Solar energy technology combines materials tailored to exploit the physics at their junctions which enable light energy collection, and extraction as electricity. A promising class of candidate materials is the layered semiconducting transition metal dichalcogenides (TMDs). Advisor: David Cobden, Physics ...

Brigit Miller

I am interested in understanding the process of making semiconductor nanocrystals n-type post-synthetically using photochemical doping, where the nanocrystals are reduced using light and a chemical reductant. Advisor: Daniel Gamelin, Chemistry ...

David Lingerfelt

The overarching aim of my research is to accurately resolve the electronic and nuclear dynamics of chemical systems to gain mechanistic insight into excited state processes of relevance to energy conversion and storage. Advisor: Xiaosong Li, Chemistry ...

Francis Lin

Through my work we are developing a series of fullerene derivatives and conductive polymers as charge transporting materials for photovoltaics. Advisor: Alex K.-Y. Jen, Chemistry & Materials Science and Engineering ...

Yun Li

Our research of solid-state zinc-ion batteries will construct a comprehensive electrochemical database of zinc-ion batteries by using the solid-state battery configuration MnO2/PEO-ZnCl2/Zn. Advisor: Jihui Yang, Materials Science and Engineering ...

John Katahara

I have recently developed a theoretical model to describe sub-bandgap absorption and emission and revealed the concentration of tail states in CZTSSe and CIGSSe. Advisor: Hugh Hillhouse, Chemical Engineering ...

Todd Karin

The III-V semiconductor material system takes a prominent place in the arsenal of light-harvesting and light-producing technologies: it is used in commercial LEDs and in the highest efficiency solar cells. Advisor: Kai-Mei Fu, Physics ...