Rhodium(III)‐Catalyzed Aryl Borrowing Amination of Diaryl Methanols Containing Pyridine‐Directing Groups
作者:Zheng‐Qiang Liu、Jing Tao、Xin Zhuang、Chuan‐Ming Hong、Zhen Luo、Yu‐Fei Wu、Qing‐Hua Li、Tang‐Lin Liu
DOI:10.1002/adsc.202100772
日期:2021.12.7
The rhodium(III)-catalyzed aryl borrowing amination of various diaryl methanols with sulfonamides have been developed. The amination of alcohols via C−C bond activation is less developed and remains a challenge. These aryl borrowing reactions feature mild reaction conditions, good functional group tolerance, and compatibility with a wide range of alcohols, overall comprising an atom- and step-economic
Silver catalyzed pyridine‐directed acceptorless dehydrogenation of secondary alcohols
作者:Xin Zhuang、Jing Tao、Zhen Luo、Chuan‐Ming Hong、Zheng‐Qiang Liu、Qing‐Hua Li、Li‐Qing Ren、Qun‐Li Luo、Tang‐Lin Liu
DOI:10.1002/jccs.202000517
日期:2021.2
A silver catalyzed pyridine‐directed acceptorless dehydrogenation of secondary benzyl alcohols was developed. This general procedure delivers ketones with high atom‐economy and hydrogen was the sole byproduct. This dehydrogenation reaction has a good functional group tolerance and high efficiency (up to 90% yield and 10,000/1 substrates‐to‐catalyst ratio).
Reductive Cleavage of the C sp 2C sp 3 Bond of Secondary Benzyl Alcohols: Rhodium Catalysis Directed by N-Containing Groups
作者:Kang Chen、Hu Li、Zhi-Quan Lei、Yang Li、Wen-He Ye、Li-Sheng Zhang、Jian Sun、Zhang-Jie Shi
DOI:10.1002/anie.201204338
日期:2012.9.24
1,1‐Biarylmethanol substrates undergo reductivecleavage of the CCbond in the presence of a cationic RhIII catalyst and H2 (see scheme; DG=directinggroup). Various functional groups are tolerated in the reaction system. Preliminary studies indicate that a five‐membered rhodacycle intermediate, which then converts into a RhIII hydride species for the reduction, is involved in the catalytic cycle.
Ruthenium(II)-Catalyzed Grignard-Type Nucleophilic Addition of C(sp<sup>2</sup>)–H Bonds to Unactivated Aldehydes
作者:Lidong Yang、Zezhao Liu、Tingyu Tang、Shibiao Tang、Bin Li、Baiquan Wang
DOI:10.1021/acs.joc.2c02039
日期:2022.11.4
The Grignard-type nucleophilicaddition of C(sp2)–H bonds to aldehydes catalyzed by high-oxidation-state transition metal complexes is limited to activated aldehydes. Herein, we report the first example of Grignard-type nucleophilicaddition of C(sp2)–H bonds to unactivated aldehydes catalyzed by high-oxidation-state ruthenium(II). The reaction has mild reaction conditions and good functional group