Long-Sheng Zheng
Hangzhou Normal University
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Featured researches published by Long-Sheng Zheng.
Chemistry-an Asian Journal | 2013
Fei Ye; Zhan-Jiang Zheng; Wen-Hui Deng; Long-Sheng Zheng; Yuan Deng; Chungu Xia; Li-Wen Xu
In this work, we have successfully synthesized a new family of chiral Schiff base–phosphine ligands derived from chiral binaphthol (BINOL) and chiral primary amine. The controllable synthesis of a novel hexadentate and tetradentate N,O,P ligand that contains both axial and sp3-central chirality from axial BINOL and sp3-central primary amine led to the establishment of an efficient multifunctional N,O,P ligand for copper-catalyzed conjugate addition of an organozinc reagent. In the asymmetric conjugate reaction of organozinc reagents to enones, the polymer-like bimetallic multinuclear Cu-Zn complex constructed in situ was found to be substrate-selective and a highly excellent catalyst for diethylzinc reagents in terms of enantioselectivity (up to >99 % ee). More importantly, the chirality matching between different chiral sources, C2-axial binaphthol and sp3-central chiral phosphine, was crucial to the enantioselective induction in this reaction. The experimental results indicated that our chiral ligand (R,S,S)-L1- and (R,S)-L4-based bimetallic complex catalyst system exhibited the highest catalytic performance to date in terms of enantioselectivity and conversion even in the presence of 0.005 mol % of catalyst (S/C = 20 000, turnover number (TON) = 17,600). We also studied the tandem silylation or acylation of enantiomerically enriched zinc enolates that formed in situ from copper-L4-complex-catalyzed conjugate addition, which resulted in the high-yield synthesis of chiral silyl enol ethers and enoacetates, respectively. Furthermore, the specialized structure of the present multifunctional N,O,P ligand L1 or L4, and the corresponding mechanistic study of the copper catalyst system were investigated by 31P NMR spectroscopy, circular dichroism (CD), and UV/Vis absorption.
Chemistry: A European Journal | 2012
Zhan-Jiang Zheng; Fei Ye; Long-Sheng Zheng; Ke-Fang Yang; Guoqiao Lai; Li-Wen Xu
An interesting example of a divergent catalysis with a copper(I) and amine-functional macromolecular polysiloxanes system was successfully presented in click chemistry. In this manuscript, we demonstrate the remarkable ability of the secondary amine-functional polysiloxane to induce oxidative coupling in the copper-mediated Huisgen reactions of azides and alkynes, thereby achieving good yields and selectivities. The click reactions mediated by a polysiloxane-supported secondary amine allow the preparation of novel heterocyclic compounds, that is, bistriazoles. Comparably, it is also surprising that the use of a diamine-functional polysiloxane as ligand led to a classic Huisgen [3+2] cycloaddition in excellent yields. From the results of the present amine-functional polysiloxanes-controlled Huisgen reaction or oxidative Huisgen coupling reaction to divergent products and the proposed mechanism, we suggested that the mononuclear bistriazole-copper complex stabilized and dispersed by the secondary amine-functional polysiloxane was beneficial to prevalent the way to oxidative coupling.
Chemistry: A European Journal | 2012
Xing-Feng Bai; Li-Wen Xu; Long-Sheng Zheng; Jianxiong Jiang; Guoqiao Lai; Jun-Yan Shang
A highly efficient catalytic protocol for the isomerization of substituted amide-derived olefins is presented that successfully uses a hydride palladium catalyst system generated from [PdCl(2)(PPh(3))(2)] and HSi(OEt)(3). The Z to E isomerization was carried out smoothly and resulted in geometrically pure substituted olefins. Apart from the cis-trans isomerization of double bonds, the selective reduction of terminal olefins and activated alkenes was performed with excellent functional group tolerance in the presence of an amide-derived olefin ligand, and the products were obtained in high isolated yields (up to >99 %). Furthermore, the palladium/hydrosilane system was able to promote the reductive decarbonylation of benzoyl chloride when a (Z)-olefin with an aromatic amide moiety was used as a ligand.
Synthetic Communications | 2014
Fei Li; Wei Zhou; Long-Sheng Zheng; Li Li; Zhan-Jiang Zheng; Li-Wen Xu
Abstract In this work, we have developed a facile protocol with salan–Cu system for the facile and selective synthesis of β-hydroxyesters via silyl-Reformatsky reaction with α-silylester and aldehydes. The screening and optimization of reaction conditions led to the determination of a practical and efficient procedure in which the salan–Cu exhibited promising catalytic activity in dimethylsulfoxide, in which the silyl-Reformatsky reaction of aromatic aldehydes with α-trimethylsilylmethylacetate gave the corresponding β-hydroxyester derivatives in excellent yields (up to 98%) under fluoride-free reaction conditions. GRAPHICAL ABSTRACT
European Journal of Organic Chemistry | 2013
Long-Sheng Zheng; Kezhi Jiang; Yuan Deng; Xing-Feng Bai; Guang Gao; Feng-Lei Gu; Li-Wen Xu
Advanced Synthesis & Catalysis | 2014
Tao Song; Long-Sheng Zheng; Fei Ye; Wen-Hui Deng; Yun-Long Wei; Kezhi Jiang; Li-Wen Xu
Chemical Communications | 2012
Xing-Feng Bai; Fei Ye; Long-Sheng Zheng; Guoqiao Lai; Chungu Xia; Li-Wen Xu
Tetrahedron | 2013
Long-Sheng Zheng; Li Li; Ke-Fang Yang; Zhan-Jiang Zheng; Xu-Qiong Xiao; Li-Wen Xu
Advanced Synthesis & Catalysis | 2014
Long-Sheng Zheng; Yun-Long Wei; Kezhi Jiang; Yuan Deng; Zhan-Jiang Zheng; Li-Wen Xu
Tetrahedron Letters | 2013
Fei Li; Li Li; Wei Yang; Long-Sheng Zheng; Zhan-Jiang Zheng; Kezhi Jiang; Yixin Lu; Li-Wen Xu