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Sui Yang

Researcher at University of California, Berkeley

Publications -  71
Citations -  2827

Sui Yang is an academic researcher from University of California, Berkeley. The author has contributed to research in topics: Metamaterial & Polariton. The author has an hindex of 22, co-authored 67 publications receiving 2095 citations. Previous affiliations of Sui Yang include Fudan University & University of California, Los Angeles.

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Aspect ratio determines the quantity of mesoporous silica nanoparticle uptake by a small GTPase-dependent macropinocytosis mechanism.

TL;DR: Using a mesoporous silica nanoparticle library that has been constructed to cover a range of different lengths, it is demonstrated that the AR of rod-shaped particles determines the rate and abundance of MSNP uptake by a macropinocytosis process in HeLa and A549 cancer cell lines.
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Roadmap on plasmonics

TL;DR: In this paper, the authors present a broad overview of modern plasmonics, including quantum plasmons based on the quantum-mechanical properties of both the underlying materials and the plasons themselves (such as their quantum generator, spaser, etc.).
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High-Performance Single-Crystalline Perovskite Thin-Film Photodetector.

TL;DR: A photodetector based on SC-TF perovskite active layer is reported with a record performance of a 50 million gain, 70 GHz gain-bandwidth product, and a 100-photon level detection limit at 180 Hz modulation bandwidth, which as far as the authors know are the highest values among all the reported perov Skites.
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Generation of acoustic self-bending and bottle beams by phase engineering

TL;DR: The generation of acoustic bottle beams in homogeneous space without using metamaterials is demonstrated, where the sound energy flows through a three-dimensional curved shell in air leaving a close-to-zero pressure region in the middle, exhibiting the capability of circumventing obstacles.
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On the origin of helical mesostructures.

TL;DR: The synthesis of helical mesoporous materials with chiral channels in the presence of achiral surfactants is reported and a simple and purely interfacial interaction mechanism is suggested to explain the spontaneous formation of helicals mesostructures.