Phd Thesis Prize

Phd Thesis Prize-76
Dohyung Kim Advisor: Professor Peidong Yang, Department of Chemistry, Materials science and Engineering Nanoparticle Catalysts for Chemical Valorization of Carbon Dioxide Electrochemical or photochemical conversion of carbon dioxide to value-added products has the potential to fundamentally change our traditional ways of harvesting energy and manufacturing chemical products.Kim's thesis focuses on the use of nanoparticles as catalusts for CO2 conversion and their structural factors affecting catalytic properties are discussed.Using another nonlinear optical probe, second harmonic generation spectroscopy, I further identify an edge response at the domain boundary of a continuous TMDC crystal synthesized by the chemical vapor deposition technique.

Dohyung Kim Advisor: Professor Peidong Yang, Department of Chemistry, Materials science and Engineering Nanoparticle Catalysts for Chemical Valorization of Carbon Dioxide Electrochemical or photochemical conversion of carbon dioxide to value-added products has the potential to fundamentally change our traditional ways of harvesting energy and manufacturing chemical products.Kim's thesis focuses on the use of nanoparticles as catalusts for CO2 conversion and their structural factors affecting catalytic properties are discussed.Using another nonlinear optical probe, second harmonic generation spectroscopy, I further identify an edge response at the domain boundary of a continuous TMDC crystal synthesized by the chemical vapor deposition technique.

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In order to carry out it's biological function, the polypeptide must fold to the native state, and the folding process can begin before translation is complete.

Goldman's thesis work has focused on ribosome-nascent chain interactions that affect both the folding process and the activity of the ribosome.

In order to give unbiased predictions of how these systems behave, we use theoretical frameworks that do not rely on experimental fitting parameters, and use supercomputers to perform calculations.

We show that many of these interesting electronic and optical properties stem from the weak electronic screening in these materials, which a result of their reduced dimensionality and which often cannot be accounted for with simpler models.

Luminescent concentrators have been studied for more than three decades as potential low-cost but not high efficiency photovoltaics.

Astute application of the black body radiation law indicates that photonic design is necessary to achieve high efficiency: a reflective filter must be used to trap luminescence at all angles while allowing higher energy photons to pass through.

Compared to bulk materials, atomically thin two dimensional materials are unique in that both electronic band structure and chemical potential can be tuned in situ by electric field.

Therefore optical studies in such systems greatly benefit from modern micro-facbrication technique and electric control of the material properties.

Using a novel optical tweezers assay, we observed folding transitions of single ribosome-bound nascent polypeptides.

We found that the ribosome can modulate the kinetics of folding, guiding the protein to the native state. Long Ju Advisor: Professor Feng Wang, Department of Physics Optical Spectroscopy of Two Dimensional Graphene and Boron Nitride Ju's thesis describes the use of optical spectroscopy in studying the physical properties of two dimensional nano materials like graphene and hexogonal boron nitride.

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