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Guochen Jia

Researcher at Hong Kong University of Science and Technology

Publications -  186
Citations -  7689

Guochen Jia is an academic researcher from Hong Kong University of Science and Technology. The author has contributed to research in topics: Catalysis & Ruthenium. The author has an hindex of 44, co-authored 177 publications receiving 7143 citations. Previous affiliations of Guochen Jia include University of Hong Kong.

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Theoretical investigation of alkyne metathesis catalyzed by W/Mo alkylidyne complexes

TL;DR: In this paper, the mechanism of alkyne metathesis catalyzed by W/Mo alkylidyne complexes has been theoretically investigated with the aid of density functional theory calculations.
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Synthesis of Alkyl- and Aryl[hydrotris(pyrazolyl)borato]carbonylruthenium Complexes by Decarbonylation of Alcohols. Synthesis of TpRuH(H2)(PPh3) [Tp = Hydrotris(pyrazolyl)borate], an Observable Intermediate in the Decarbonylation Reaction

TL;DR: In this paper, a mechanism involving metal−η2-aldehyde and −η 2-dihydrogen intermediates is proposed for the decarbonylation reaction, which is supported by the observation of the η2dihyrogen complex TpRuH(H2)(PPh3) (3) during the decarbing reaction, where the R groups of RCH2OH become the σ-organyl groups in the final metal complexes.
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Structural, acidity and chemical properties of some dihydrogen/hydride complexes of Group 8 metals with cyclopentadienyls and related ligands

TL;DR: In this article, the acidity of groups 8 metal complexes were compared and it was shown that the relative acidities of these hydride complexes are strongly affected by the auxiliary ligands, metals, and possibly also the H-H interaction.
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Our Journey to the Chemistry of Metallabenzynes

TL;DR: In this paper, a personal account summarizes the chemistry of transition-metal-containing metallabenzynes, organometallic compounds derived from formal replacement of a C atom in benzyne by an isolobal transition metal fragment.
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Understanding Nonplanarity in Metallabenzene Complexes

TL;DR: The nonplanarity of metallabenzene complexes has been investigated theoretically via density functional theory (DFT) calculations as discussed by the authors, and it has been shown that a metallabbenzene has four occupied π molecular orbitals (8 π...