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Zebing Zeng

Researcher at Hunan University

Publications -  101
Citations -  4818

Zebing Zeng is an academic researcher from Hunan University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 29, co-authored 74 publications receiving 3565 citations. Previous affiliations of Zebing Zeng include National University of Singapore.

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Discerning the Chemistry in Individual Organelles with Small-Molecule Fluorescent Probes.

TL;DR: This Review summarizes the existing fluorescent probes that target chemical/biological events within a single organelle and organelle-anchoring strategies are described and emphasized to inspire the design of new generations of fluorescent probes, before concluding with future prospects on the possible further development of chemical biology.
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Pro-aromatic and anti-aromatic π-conjugated molecules: an irresistible wish to be diradicals

TL;DR: This critical review first introduces the fundamental electronic structure of Kekulé diradicals within the concepts of anti-aromaticity and pro-Aromaticity in the context of Hückel aromaticity and diradical character.
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Selective Visualization of the Endogenous Peroxynitrite in an Inflamed Mouse Model by a Mitochondria-Targetable Two-Photon Ratiometric Fluorescent Probe

TL;DR: Probe MITO-CC, with fast response rate, excellent sensitivity, and outstanding selectivity toward ONOO-, was successfully applied to ratiometric detection of endogenous ONOO- produced by HepG2/RAW264 cells and further employed for imaging oxidative stress in an inflamed mouse model.
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Zethrenes, extended p-quinodimethanes, and periacenes with a singlet biradical ground state.

TL;DR: This Account discusses the chemistry and physics of three types of PHs with a significant singlet biradical character, primarily developed in this group, and finds that Clar's aromatic sextet rule, which is useful for the closed-shell PAHs, can also predict the relative biradicals character of benzenoid PH-based singletBiradicaloids.
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A highly efficient polyampholyte hydrogel sorbent based fixed-bed process for heavy metal removal in actual industrial effluent.

TL;DR: The fixed-bed column sorption results indicated that the polyampholyte hydrogel was particularly effective in removing Pb( II) and Cd(II) from actual industrial effluent to meet the regulatory requirements.