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Wenting Wu
Researcher at China University of Petroleum
Publications - 161
Citations - 7833
Wenting Wu is an academic researcher from China University of Petroleum. The author has contributed to research in topics: Catalysis & Chemistry. The author has an hindex of 46, co-authored 140 publications receiving 6230 citations. Previous affiliations of Wenting Wu include Chinese Academy of Sciences & Argonne National Laboratory.
Papers
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Yellow-visual fluorescent carbon quantum dots from petroleum coke for the efficient detection of Cu2+ ions
TL;DR: Yellow-visual fluorescent carbon quantum dots (CQDs) were prepared from petroleum coke by ultrasonic assisted chemical oxidation and were used as label-free probes for Cu2+ detection in water.
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Tuning the Emission Colour of Triphenylamine-Capped Cyclometallated Platinum(II) Complexes and Their Application in Luminescent Oxygen Sensing and Organic Light-Emitting Diodes
Wenting Wu,Chuanhui Cheng,Wanhua Wu,Huimin Guo,Shaomin Ji,Peng Song,Ke-Li Han,Jianzhang Zhao,Xin Zhang,Yubo Wu,Guotong Du,Guotong Du +11 more
TL;DR: In this paper, triphenylamine (tpa) substituents on the ppy ligand have been used to increase the homo-lumo energy gap and thus red-shifted emission.
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A green approach towards simultaneous remediations of chromium(VI) and arsenic(III) in aqueous solution
Bo Jiang,Guo Jianbo,Zhaohui Wang,Xing Zheng,Jingtang Zheng,Wenting Wu,Mingbo Wu,Qinzhong Xue +7 more
TL;DR: In this article, the applicability of glow discharge plasma for simultaneous redox transformations of Cr(VI) and As(III) was evaluated in aqueous solution, and the results showed that there was a beneficially synergistic effect between Cr( VI) reduction and As (III) oxidation.
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Room‐Temperature Long‐Lived 3IL Excited State of Rhodamine in an NN PtII Bis(acetylide) Complex with Intense Visible‐Light Absorption
TL;DR: In this paper, an NN PtII bis(acetylide) complex was prepared with the rhodamine fluorophore [Pt-Rho, in which NN is dbbpy = 4,4′-bis(tert-butyl-2,2′-bipyridine)].
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Highly Effective Near-Infrared Activating Triplet-Triplet Annihilation Upconversion for Photoredox Catalysis.
TL;DR: It is demonstrated that the optimal TTA-UC pair developed in this study can act as a highly effective light wavelength up-shifter to enable NIR light to drive a photoredox catalysis that otherwise requires visible light.