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Yuan Gao

Researcher at Agency for Science, Technology and Research

Publications -  238
Citations -  7803

Yuan Gao is an academic researcher from Agency for Science, Technology and Research. The author has contributed to research in topics: Quantum dot & Perovskite (structure). The author has an hindex of 38, co-authored 200 publications receiving 5017 citations. Previous affiliations of Yuan Gao include University of Toronto & Taizhou University.

Papers
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Nanosecond colloidal quantum dot lasers for sensing

TL;DR: Low-threshold, gain switched colloidal quantum dot (CQD) distributed-feedback lasers operating in the nanosecond regime are reported and proposed for sensing applications for the first time to the authors' knowledge.
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A Monolithically Integrated Pressure/Oxygen/Temperature Sensing SoC for Multimodality Intracranial Neuromonitoring

TL;DR: A fully integrated SoC for multimodality intracranial neuromonitoring with three sensors including a capacitive MEMS pressure sensor, an electrochemical oxygen sensor and a solid-state temperature sensor integrated together in a single chip with their respective interface circuits.
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AC-driven, color- and brightness-tunable organic light-emitting diodes constructed from an electron only device

TL;DR: In this paper, a color and brightness-tunable organic light-emitting diode (OLED) was reported, which was realized by inserting a charge generation layer into an electron-only device to form an n-i-p-I-n structure.
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A Sub- ${\mu}$ W/Ch Analog Front-End for $\Delta $ -Neural Recording With Spike-Driven Data Compression

TL;DR: A fully implantable neural recording IC with a spike-driven data compression scheme to improve the power efficiency and preserve crucial data for monitoring brain activities and successfully demonstrated precise spike detection through both in vitro and in vivo acquisition of the neural signal.
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Efficient Energy Transfer under Two‐Photon Excitation in a 3D, Supramolecular, Zn(II)‐Coordinated, Self‐Assembled Organic Network

TL;DR: In this article, a two-photon excited Forster resonance energy transfer (FRET) process is used to enhance the solid-state fl uorescence of the supramolecular centre (acceptor) in an artifi cial 3D metalorganic complex (MLC), in which a 3D Zn (II)-coordinated tetrahedral core is utilized as the donor.