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Jun Chen

Researcher at Shanghai Jiao Tong University

Publications -  2300
Citations -  100809

Jun Chen is an academic researcher from Shanghai Jiao Tong University. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 136, co-authored 1856 publications receiving 77368 citations. Previous affiliations of Jun Chen include Peking Union Medical College & Nankai University.

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Simple preparation of nitrogen-doped TiO2 and its performance in selective oxidation of benzyl alcohol and benzylamine under visible light

TL;DR: In this article, a simple synthesis of N-doped TiO2, using a low-cost and easily handled inorganic titanium salt instead of air/moisture-sensitive alkoxide precursors, reveals its potential application toward photocatalytic synthesis of organic fine chemicals under visible light.
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liver-enriched gene 1a and 1b encode novel secretory proteins essential for normal liver development in zebrafish.

TL;DR: It is proved that Leg1 is a secretory protein that might act as a novel secreted regulator that is essential for liver and other digestive organ development in zebrafish.
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A porous 3d-4f heterometallic metal–organic framework for hydrogen storage

TL;DR: In this article, a heterometallic metal-organic framework, {[Ce(oda)3Zn1]·0.75H2O}n (1, H2oda = oxydiacetic acid), has been synthesized under hydrothermal condition.
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Tailoring lattice strain in ultra-fine high-entropy alloys for active and stable methanol oxidation

TL;DR: In this article, a surface strain strategy was proposed to tune the electrocatalytic activity of high-entropy alloys for methanol oxidation reaction (MOR) for high-resolution aberrationcorrected scanning transmission electron microscopy (STEM) and elemental mapping.
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Metal porphyrin intercalated reduced graphene oxide nanocomposite utilized for electrocatalytic oxygen reduction

TL;DR: In this paper, a simple and facile self-assembly method was reported to successfully fabricate cationic metal porphyrin intercalated into the layer of graphene oxide (GO) by the cooperative effects of electrostatic and π-π stacking interaction between positively charged metal pomorphyrin and negatively charged GO sheets.