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Ting Zhao

I will focus on developing a simple and generally-applicable ion-exchange method to synthesize diverse and high-quality atomically-thin 2D hybrid perovskites utilizing the solubility difference between organic and inorganic sublattices. ...

Nathan Wilson

I will systematically explore heterostructures formed by stacking the atomically thin semiconductors WSe2 and MoSe2 by varying their architecture, for example, by inserting a thin dielectric to quench carrier recombination, thus increasing carrier collection efficiency. ...

Maria Viitaniemi

In order to better understand the nature of carrier localization and recombination in InGaN/GaN quantum wells (QWs) used in blue light emitting diodes (LEDs) , we are developing a stimulated emission depletion (STED) microscope tailored to InGaN QWs. STED microscopy is widely used in biological systems to achieve far-field spatial resolution below the diffraction limit. ...

Brandon Rotondo

I will research into the scale up of organometallic perovskite film deposition, and examine the use of wide band gap organometallic perovskite solar cell as a top absorber in a tandem cell with a narrow band gap CIGS cell ...

Emily Rabe

The objective of my research will be to understand and control exciton-charge interactions in materials for next-generation energy conversion applications, such as solid-state lighting and excitonic solar cells. ...