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Zhijie Li

Researcher at University of Electronic Science and Technology of China

Publications -  70
Citations -  3490

Zhijie Li is an academic researcher from University of Electronic Science and Technology of China. The author has contributed to research in topics: Supercapacitor & Photoluminescence. The author has an hindex of 27, co-authored 70 publications receiving 2522 citations.

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Advances in designs and mechanisms of semiconducting metal oxide nanostructures for high-precision gas sensors operated at room temperature

TL;DR: In this paper, the authors highlight the designs and mechanisms of different SMONs with various patterns (e.g., nanoparticles, nanowires, nanosheets, nanorods, nanotubes, nanofilms, etc.) for gas sensors to detect various hazardous gases at room temperature.
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Room-Temperature High-Performance H2S Sensor Based on Porous CuO Nanosheets Prepared by Hydrothermal Method

TL;DR: The working principle of the porous CuO nanosheet based sensor to detect the H2S was identified to be the phase transition from semiconducting CuO to a metallic conducting CuS.
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A fast response & recovery H2S gas sensor based on α-Fe2O3 nanoparticles with ppb level detection limit.

TL;DR: H2S gas sensor based on α-Fe2O3 nanoparticles was fabricated by post-thermal annealing of Fe3O4 precursor which was synthesized using a facile hydrothermal route and exhibited the best sensitivity, reproducibility and long-term stability.
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Effect of Fe-doped TiO2 nanoparticle derived from modified hydrothermal process on the photocatalytic degradation performance on methylene blue.

TL;DR: XPS analysis showed that Fe3+ was not on the surface of TiO2 nanoparticles, but inserting into the matrix interior, and the photoactivity degradation of MB on Fe-doped TiO 2 nanoparticles decreased.
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Photocatalytic degradation for methylene blue using zinc oxide prepared by codeposition and sol–gel methods

TL;DR: In this article, a simple and effective route to prepare zinc oxide nanoparticle with higher photocatalytic activity through depositing zinc oxide on the silica particle surface, moreover, the catalyst is easier to recover due to its higher density.