ScholarMate
客服热线:400-1616-289
登录注册

Practical iron-catalyzed atom/group transfer and insertion reactions

Chow T. W. S.; Chen G. Q.; Liu Y. G.; Zhou C. Y.; Che C. M.
OTHER
-
引用 分享 收藏

全文

请求全文

请求全文

摘要

Iron-catalyzed reactions are receiving a surge of interest owing to the natural abundance and biocompatibility of Fe and the urge to develop practically useful sustainable catalysis for fine chemical industries. This article is a brief account of our studies on the C-O and C-N bond formation reactions catalyzed by Fe complexes supported by oligopyridine, macrocyclic tetraaza, and fluorinated porphyrin ligands. The working principle is the in situ generation of reactive Fe=O and Fe=NR intermediates supported by these oxidatively robust N-donor ligands for oxygen atom/nitrogen group transfer and insertion reactions. The catalytic reactions include C-H bond oxidation of saturated hydrocarbons (up to 87 % yield), epoxidation of alkenes (up to 96 % yield), cis-dihydroxylation of alkenes (up to 99 % yield), epoxidation-isomerization (E-I) reaction of aryl alkenes (up to 94 % yield), amination of C-H bonds (up to 95 % yield), aziridination of alkenes (up to 95 % yield), sulfimidation of sulfides (up to 96 % yield), and amide formation from aldehydes (up to 89 % yield). Many of these catalytic reactions feature high regio- and diastereoselectivity and/or high product yields and substrate conversions, and recyclability of the catalyst, demonstrating the applicability of Fe-catalyzed oxidative organic transformation reactions in practical organic synthesis.

关键词

amidationcatalysisatomgroup transferironoxidationstereospecific alkane hydroxylationiron(ii)-mediated nitrene transfermicrowave-assisted conditionstransition-metal-complexesalkene cis-dihydroxylationaqueous hydrogen-peroxidehigh-yield synthesisc-h aminationsaturated-hydrocarbonsspectroscopic characterization

出版信息

论文状态
公开发表
期刊名称
Pure and Applied Chemistry
发表日期
2012
卷
84
期
8
页码
1685-1704
DOI
10.1351/Pac-Con-11-11-08

学科领域

-

产品服务

  • 科研之友
  • 创新城
  • 科创云

服务支持

  • 帮助中心
  • 隐私政策
  • 服务条款

联系方式

在线客服:【立即咨询】
客服热线:400-1616-289
电子邮箱:support@scholarmate.com

关注或下载科研之友

微信二维码
微信公众号
客户端下载二维码
下载客户端
科研成果科研人员科研机构科研动态爱瑞思软件

©2026 深圳市科研之友网络服务有限公司

公安备案图标粤公网安备 44030502000213
粤ICP备 16046710 号粤B2-20110417