Yizhi Yuan
Peking University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Yizhi Yuan.
Chemistry: A European Journal | 2015
Yujie Liang; Yu-Feng Liang; Conghui Tang; Yizhi Yuan; Ning Jiao
A cationic cobalt(III)-catalyzed direct C-H amidation of unactivated (hetero)arenes and alkenes by using 1,4,2-dioxazol-5-ones as the amidating reagent has been developed. This transformation proceeds efficiently under external oxidant-free conditions with a broad substrate scope. Moreover, 6-arylpurine compounds, which often exhibit high potency in antimycobacterial, cytostatic, and anti-HCV activities, can be smoothly amidated, thus offering a mild protocol for their late stage functionalization.
Journal of the American Chemical Society | 2014
Xiaoqiang Huang; Xinyao Li; Miancheng Zou; Song Song; Conghui Tang; Yizhi Yuan; Ning Jiao
The Cu-catalyzed aerobic oxidative esterification of simple ketones via C-C bond cleavage has been developed. Varieties of common ketones, even inactive aryl long-chain alkyl ketones, are selectively converted into esters. The reaction tolerates a wide range of alcohols, including primary and secondary alcohols, chiral alcohols with retention of the configuration, electron-deficient phenols, as well as various natural alcohols. The usage of inexpensive copper catalyst, broad substrate scope, and neutral and open air conditions make this protocol very practical. (18)O labeling experiments reveal that oxygenation occurs during this transformation. Preliminary mechanism studies indicate that two novel pathways are mainly involved in this process.
Organic Letters | 2015
Song Song; Xiang Sun; Xinwei Li; Yizhi Yuan; Ning Jiao
An efficient and practical system for inexpensive bromination and iodination of arenes as well as heteroarenes by using readily available dimethyl sulfoxide (DMSO) and HX (X = Br, I) reagents is reported. This mild oxidative system demonstrates a versatile protocol for the synthesis of aryl halides. HX (X = Br, I) are employed as halogenating reagents when combined with DMSO which participates in the present chemistry as a mild and inexpensive oxidant. This oxidative system is amenable to late-stage bromination of natural products. The kilogram-scale experiment (>95% yield) shows great potential for industrial application.
Green Chemistry | 2015
Song Song; Xinwei Li; Xiang Sun; Yizhi Yuan; Ning Jiao
The oxidative bromination of olefins, alkynes, and ketones has been developed with HBr as the brominating reagent and DMSO as the mild oxidant. The simple conditions, high bromide-atom-economy, as well as easy accessibility and low cost of DMSO and HBr make the present strategy prospective for the synthesis of dibrominated alkanes, dibrominated alkenes and α-bromoketones.
Organic Letters | 2015
Conghui Tang; Yizhi Yuan; Ning Jiao
An intermolecular nitrogenation reaction toward the synthesis of phenanthridines has been developed. This metal-free protocol provides a novel nitrogen-incorporation transformation using azides as the nitrogen source. Phenanthridines, which are of great interest in pharmaceutical and medicinal chemistry, are synthesized efficiently in one step. Moreover, the byproducts derived from the Schmidt reaction are inhibited, which further demonstrated the high chemoselectivity of this transformation.
Chemical Communications | 2014
Tao Shen; Yizhi Yuan; Ning Jiao
Chemical Communications | 2014
Tao Shen; Yizhi Yuan; Song Song; Ning Jiao
Chemistry-an Asian Journal | 2013
Yizhi Yuan; Tao Shen; Kui Wang; Ning Jiao
ACS Catalysis | 2015
Yu-Feng Liang; Xiaoyang Wang; Yizhi Yuan; Yujie Liang; Xinyao Li; Ning Jiao
European Journal of Organic Chemistry | 2013
Conghui Tang; Yizhi Yuan; Yuxin Cui; Ning Jiao