Review paper published

Our collaborative review article about semiconductor alloy nanomaterials is published in Nature Reviews Materials. Over the past decade there has been tremendous progress in the development of nanoscale semiconductor materials with a wide range of bandgaps, obtained by alloying different individual semiconductors. One important common feature of these materials is that their nanoscale dimensions result in a large tolerance to lattice mismatches within a monolithic structure of varying compositions or between substrate and target material, which allows the achievement of almost arbitrarily controlled variations of the alloy composition. As a result, the bandgaps of these alloys can be tuned widely without the detrimental defects that are often unavoidable in bulk materials, which have a much more limited tolerance to lattice mismatches. This class of nanomaterials could have a far-reaching impact on a wide range of photonic applications including tunable lasers, solid state lighting, artificial photosynthesis and new solar cells

Welcomes new postdoc

The group welcomes new postdoc fellow, Dr. Yao Gao, to join us!  Yao has a Ph.D. in polymer chemistry and physics from Changchun Institute of Applied Chemistry, Chinese Academy of Sciences. He will be initiating our organic and hybrid materials research.

Letian’s paper on PNAS

Our paper about inorganic halide perovskite nanowire multi-color heterojunctions has been published on PNAS. Halide perovskites are promising semiconductor materials for solutionprocessed optoelectronic devices. Here, we show that the anion-exchange chemistry can be precisely controlled in single-crystalline halide perovskite nanomaterials when combined with nanofabrication techniques. We demonstrate spatially resolved multicolor CsPbX3 (X = Cl, Br, I, or alloy of two halides) nanowire heterojunctions with a pixel size down to 500 nm with the photoluminescence tunable over the entire visible spectrum. This work is highlighted by LBNL news and many others.

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