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Dive into the research topics where Guang-Yun He is active.

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Featured researches published by Guang-Yun He.


Journal of Organic Chemistry | 2012

Asymmetric Michael Addition of α-Substituted Isocyanoacetates with Maleimides Catalyzed by Chiral Tertiary Amine Thiourea

Jian-Fei Bai; Liang-Liang Wang; Lin Peng; Yunlong Guo; Li-Na Jia; Fang Tian; Guang-Yun He; Xiao-Ying Xu; Li-Xin Wang

A highly diastereoselective and enantioselective Michael addition of α-substituted isocyanoacetates with maleimides catalyzed by bifunctional tertiary amine thioureas has been developed. Various chiral succinimide derivatives bearing adjacent quaternary and tertiary stereocenters were prepared in excellent yields (up to 98%), diastereoselectivities (up to 99:1), and enantioselectivities (up to 98% ee). The synthetic utility of chiral succinimide derivatives is also demonstrated in the preparation of h5-HT(1d) receptor agonist motifs.


Analytical Letters | 2017

Characterization of the Retro-[3+2] Reaction of Protonated 2,3′-Bisindolylmethanes by Electrospray Ionization–Tandem Mass Spectrometry

Guang-Yun He; Tian Cai; Xiao-Ying Xu; Dong-Mei Fang; Zhi-Jun Wu

ABSTRACT Twelve 2,3′-bisindolylmethanes with various substituents were investigated using electrospray ionization quadrupole time-of-flight tandem mass spectrometry in positive ion mode. A retro-[3+2] reaction was observed in the collision-induced dissociation spectra of protonated 2,3′-bisindolylmethanes for the first time. The mechanism of retro-[3+2] reaction was concerted or stepwise. For the concerted pathway, carbon–carbon bonds of a protonated compound simultaneously cracked and the m/z 208 ion ([C15H10D2N]+) was observed with hydrogen–deuterium exchange labeling. The stepwise pathway goes through 1,3-hydrogen migration twice and the m/z 208 ion ([C15H10D2N]+) and m/z 207 ion ([C15H11DN]+) were detected with deuterium labeling. In the deuterium-labeled tandem mass spectrum for one compound, only the peak at m/z 208 was present at high abundance, suggesting that the concerted pathway is more likely. In addition, the substituents have no obvious trends on the ratios of the product intensity to the base intensity, further supporting the concerted pathway.


Organic and Biomolecular Chemistry | 2012

Asymmetric hydroxyamination of oxindoles catalyzed by chiral bifunctional tertiary amine thiourea: construction of 3-amino-2-oxindoles with quaternary stereocenters

Li-Na Jia; Jun Huang; Lin Peng; Liang-Liang Wang; Jian-Fei Bai; Fang Tian; Guang-Yun He; Xiao-Ying Xu; Li-Xin Wang


Journal of Mass Spectrometry | 2013

Unexpected [M - H](+) ions in cyclopenta[b]indoles detection by electrospray ionization mass spectrometry

Guang-Yun He; Xiao-Ying Xu; Dong-Mei Fang; Shi-Wei Luo; Li-Xin Wang; Guo-Lin Zhang; Zhi-Jun Wu


Chinese Journal of Chemistry | 2012

Asymmetric Double Michael Reaction Catalyzed by Simple Primary Amine Catalysts: A Straightforward Approach to Construct Spirocyclic Oxindoles

Xi-Ya Luo; Liang-Liang Wang; Lin Peng; Jian-Fei Bai; Li-Na Jia; Guang-Yun He; Fang Tian; Xiao-Ying Xu; Li-Xin Wang


Archive | 2010

New preparation method of atorvastatin calcium 1H-pyrrole derivatives

Yi Chen; Lixin Gan; Guang-Yun He; Fang Tian; Li-Xin Wang; Wen Wang; Xiao-Ying Xu


Archive | 2017

CCDC 851295: Experimental Crystal Structure Determination

Jian-Fei Bai; Liang-Liang Wang; Lin Peng; Yunlong Guo; Li-Na Jia; Fang Tian; Guang-Yun He; Xiao-Ying Xu; Li-Xin Wang


International Journal of Mass Spectrometry | 2016

Radical ions and dehydro cations in detection of 2,3′-bisindolylmethanes using electrospray mass spectrometry

Guang-Yun He; Tian Cai; Xiao-Ying Xu; Dong-Mei Fang; Zhi-Jun Wu


Archive | 2011

2-methyl-2(4-(2-oxo-tetrahydrofuran-3-carbonyl)phenyl)propionitrile of fexofenadine intermediate and preparation method for salt thereof

Li-Xin Wang; Lixin Gan; Xiao-Ying Xu; Wen Wang; Huang Jun; Fang Tian; Guang-Yun He


Archive | 2011

Method for preparing pregabalin intermediate 3-isobutylglutaric acid

Li-Xin Wang; Xiao-Ying Xu; Qing-Chun Huang; Xianguo Li; Fang Tian; Guang-Yun He

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Xiao-Ying Xu

Chinese Academy of Sciences

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Li-Xin Wang

Chinese Academy of Sciences

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Fang Tian

Chinese Academy of Sciences

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Jian-Fei Bai

Chinese Academy of Sciences

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Li-Na Jia

Chinese Academy of Sciences

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Liang-Liang Wang

Chinese Academy of Sciences

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Lin Peng

Chinese Academy of Sciences

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Dong-Mei Fang

Chinese Academy of Sciences

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Wen Wang

Chinese Academy of Sciences

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Zhi-Jun Wu

Chinese Academy of Sciences

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