F
Fan Yang
Researcher at China University of Petroleum
Publications - 1888
Citations - 34524
Fan Yang is an academic researcher from China University of Petroleum. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 65, co-authored 986 publications receiving 23818 citations. Previous affiliations of Fan Yang include G. D. Searle & Company & Peking University.
Papers
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Journal ArticleDOI
Rose bengal as photocatalyst: visible light-mediated Friedel–Crafts alkylation of indoles with nitroalkenes in water
Zongyi Yu,Jingnan Zhao,Fan Yang,Tang Xiaofei,Yufeng Wu,Cunfei Ma,Bo Song,Lei Yun,Qingwei Meng +8 more
TL;DR: A novel and facile visible-light-mediated alkylation of indoles and nitroalkenes has been developed using rose bengal acts as a photosensitizer and environmentally benign water was used as the green and efficient reaction medium.
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Widespread Atmospheric Tellurium Contamination in Industrial and Remote Regions of Canada.
Johan A. Wiklund,Jane L. Kirk,Derek C. G. Muir,Jacques Carrier,Amber Gleason,Fan Yang,Marlene S. Evans,Jonathan Keating +7 more
TL;DR: It is suggested that sediment cores reliably record atmospheric Te deposition and that anthropogenic activities have significantly augmented atmospheric Te levels, making it an emerging contaminant of potential concern.
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Graphene oxide/carbon nanotubes–Fe3O4 supported Pd nanoparticles for hydrogenation of nitroarenes and C–H activation
TL;DR: In this article, Fe3O4 magnetic nanocomposites combined with graphene oxide (GO) and carbon nanotubes (CNTs) are synthesized by a hydrothermal method, followed by synthesis of GO/CNT-supported Pd nanoparticles using a gas-liquid interfacial plasma (GLIP) method with Pd(OAc)2 as a precursor.
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Visible-Light-Driven Enantioselective Aerobic Oxidation of β-Dicarbonyl Compounds Catalyzed by Cinchona-Derived Phase Transfer Catalysts in Batch and Semi-Flow
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High Baud Rate Transmission With Silicon Photonic Modulators
TL;DR: In this article, the basic design of a typical carrier-depletion-based dual-drive traveling-wave Mach-Zehnder modulator (TW-MZM) is studied by simulation based on an all-silicon TW-MzM, and the transmission experiments of high baud rate single sideband 4-ary pulse amplitude modulation (PAM-4) signals with linear equalization and artificial neural network based equalization, respectively, are reported.