Visible-light-promoted phosphorylation carbonylation of unactivated alkenes DOI

Ren‐Guan Miao,

Yuanrui Wang, Xiao‐Feng Wu

et al.

Journal of Catalysis, Journal Year: 2024, Volume and Issue: unknown, P. 115933 - 115933

Published: Dec. 1, 2024

Language: Английский

Nickel-Catalyzed Four-Component Carbonylation of 1,3-Butadiene To Access β,γ-Unsaturated Ketones DOI Creative Commons

Bing‐Hong Teng,

Zhipeng Bao, Yingying Zhao

et al.

Organic Letters, Journal Year: 2024, Volume and Issue: 26(22), P. 4779 - 4783

Published: May 29, 2024

A new strategy to obtain β,γ-unsaturated ketones via the cross-coupling of 1,3-butadiene, alkyl bromides, and arylboronic acids under 1 bar CO with nickel as catalyst has been developed. This newly developed four-component carbonylation procedure features advantages including using a cheap catalytic system, high step economy, mild reaction conditions, excellent 1,4-regioselectivity, thereby providing sustainable alternative tool for production compared present tactics. To elucidate application potential this method, olefin synthons are derived from representative coupling product.

Language: Английский

Citations

6

Single-Electron-Transfer-Mediated Carbonylation Reactions DOI Creative Commons

Le‐Cheng Wang,

Xiao‐Feng Wu

Accounts of Chemical Research, Journal Year: 2025, Volume and Issue: unknown

Published: March 5, 2025

ConspectusTransition-metal-catalyzed carbonylation coupling methods have been accepted as an essential tool for producing carbonylated products over the past few decades. Despite its long-standing history and widespread industrial applications, several challenges remain in chemistry. These include reliance on precious metal catalysts, need of high-energy radiation, difficulties unactivated chemical bonds, etc. As alternative to classic two-electron transfer process, single-electron-transfer (SET)-mediated has emerged a powerful achieve elusive transformations. Over years, commonly available functional handles, such alkenes alkyl halides, via single-electron pathway valuable area research.Our team dedicated developing new reactions using bulk chemicals construct high-value products. broad synthetic motivating us explore SET-mediated transformations two key classes chemicals: alkanes halides. Specifically, our work centered main approaches: (1) Single-electron reduction C(sp3)-X bonds: this strategy leverages activate promoting formation carbon radicals, which turn promotes subsequent addition metals or CO. However, significant challenge lies highly negative potential certain substrates [Ered < -2 V compared saturated calomel electrode (SCE) iodides]. these challenges, intrinsic reducibility CO reactivity various carbonyl-metal intermediates facilitate smooth reaction progress. (2) oxidative C(sp3)-H emphasizes efficiency, high atomic utilization, minimal waste by bypassing traditional preactivation methods. Using 3d we successfully performed aminocarbonylation alkoxycarbonylation wide range bonds (such those aliphatic alkanes, ethers, amines, etc.). The above approaches also enabled radical relay alkenes, allowing precise control pathways. Such improves both efficiency selectivity. advancements transition photoredox catalysis resulting oxyalkylative carbonylation, aminoalkylative fluoroalkylative double rearrangement carbonylation.SET-mediated significantly enhances sustainability scalability process reducing catalysts enabling milder conditions. Additionally, carefully controlling intermediates, fine-tuned produce with This flexibility expands applications chemistry processes. Finally, place particular emphasis application drug discovery, where they serve handles late-stage modification bioactive molecules. applicability enriches toolbox synthesis, efficient functionalization complex versatile approach accelerate discovery novel therapeutic agents, making it critical modern medicinal

Language: Английский

Citations

0

Photoredox-catalyzed carbonylative acylation of styrenes with Hantzsch esters DOI Creative Commons

Qiangwei Li,

Le‐Cheng Wang,

Zhipeng Bao

et al.

Chemical Communications, Journal Year: 2024, Volume and Issue: 60(35), P. 4656 - 4658

Published: Jan. 1, 2024

A three-component carbonylation that provides a new method for the synthesis of ketones from Hantzsch esters has been developed.

Language: Английский

Citations

3

Visible light-promoted oxycarbonylation of unactivated alkenes DOI Creative Commons

Hefei Yang,

Yuanrui Wang,

Le‐Cheng Wang

et al.

EES Catalysis, Journal Year: 2024, Volume and Issue: 2(6), P. 1247 - 1252

Published: Jan. 1, 2024

We developed an intermolecular oxygen-centered radical addition carbonylation reaction of unactivated alkenes under visible light irradiation which provides a new strategy to alkenes.

Language: Английский

Citations

2

Application of Carbonylation in the Synthesis of Bulk and Fine Chemicals DOI

Huibing Shi,

Yaowei Wang, Peng Wang

et al.

Chinese Journal of Organic Chemistry, Journal Year: 2024, Volume and Issue: 44(6), P. 1811 - 1811

Published: Jan. 1, 2024

Language: Английский

Citations

1

Palladium-Catalyzed Four-Component Radical Cascade Carbonylation Access to 2,3-Disubstituted Benzofuran Derivatives DOI
Ming Li,

Dong‐Yu Miao,

Fan Gao

et al.

Organic Letters, Journal Year: 2024, Volume and Issue: unknown

Published: Sept. 24, 2024

Multicomponent radical tandem reactions have emerged as a crucial technique for synthesizing complex molecules in organic chemistry. In this study, we report palladium-catalyzed four-component difluoroalkylative carbonylation of enynes and ethyl difluoroiodoacetate. This transformation proceeds through multistep sequential reaction that introduces reactive difluoro carbonyl groups while constructing the benzofuran skeleton. Moreover, variety valuable 2,3-disubstituted derivatives were obtained respectable yields with excellent functional group compatibility.

Language: Английский

Citations

1

Trifluoromethylthiolation Carbonylation of Unactivated Alkenes via Distal Migration DOI Creative Commons

Ren‐Guan Miao,

Yuanrui Wang, Zhipeng Bao

et al.

Organic Letters, Journal Year: 2024, Volume and Issue: unknown

Published: Nov. 20, 2024

Sulfur-containing compounds represent a significant category of organic compounds, and the introduction sulfur groups into can effectively enhance their biological activity synthetic diversity. Although variety difunctionalization reactions alkenes based on radicals have been documented, challenges remain in carbonylative unactivated by addition radical. Herein, we present trifluoromethylthiolative carbonylation reaction alkenes, which goes through trifluoromethylthiol radical to then newly generated carbon intermediate. A heterocyclic/aryl migration presence monoxide is crucial for success this methodology finally resulted formation sulfur-containing carbonylated products good yields.

Language: Английский

Citations

1

Four-component regio-divergent carbonylative condensations for the sustainable syntheses of acylhydrazones DOI
Wenjun Jiang,

Mengdi Pang,

Yan Cai

et al.

Organic Chemistry Frontiers, Journal Year: 2024, Volume and Issue: 11(14), P. 3833 - 3841

Published: Jan. 1, 2024

Novel catalytic four-component regiodivergent tandem carbonylative condensations of alkenes for the sustainable syntheses acylhydrazones with high atom economy and excellent chemoselectivity have been developed.

Language: Английский

Citations

0

Regioselective C-C bond cleavage/aminocarbonylation cascade under copper catalysis DOI

Qi-Chao Shan,

Zhao Yan,

Yong Wu

et al.

Science China Chemistry, Journal Year: 2024, Volume and Issue: unknown

Published: Aug. 28, 2024

Language: Английский

Citations

0

Low-Valent Tungsten Catalyzed Carbonylative Synthesis of Benzoates from Aryl Iodides and Alcohols DOI Creative Commons
Feihua Ye, Lu Lin, Zhaoyang Huang

et al.

Molecules, Journal Year: 2024, Volume and Issue: 29(22), P. 5305 - 5305

Published: Nov. 10, 2024

Non-noble metals catalyzed carbonylative reactions serve as straightforward and sustainable methods for the synthesis of functionalized carbonyl-containing compounds. Herein, a low-valent-tungsten-catalyzed reaction that enables coupling aryl iodides alcohols or phenols was disclosed, employing readily available W(CO)

Language: Английский

Citations

0