for multisubstituted pyridines from β-aryl-substituted α,β-unsaturated oxime ethers and alkenes via Pd-catalyzed C–H activation has been developed. Systematic optimization of catalyst ligands revealed that sterically hindered pyridines increased the reactivity. Mechanistic studies suggested that the products are formed by Pd-catalyzed β-alkenylation of α,β-unsaturated oxime followed by aza-6π-electrocyclization
Pyridine synthesis from oximes and alkynesviarhodium(<scp>iii</scp>) catalysis: Cp* and Cp<sup>t</sup>provide complementary selectivity
作者:Todd K. Hyster、Tomislav Rovis
DOI:10.1039/c1cc15248c
日期:——
The synthesis of pyridines from readily available α,β-unsaturated oximes and alkynes under mild conditions and low temperatures using Rh(III) catalysis has been developed. It was found that the use of sterically different ligands allows for complementary selectivities to be achieved.
Diastereoselective Synthesis of Nine-Membered Heterocycles <i>via</i>
the Cycloaddition and Sequential Rearrangement of <i>N</i>
-Vinyl Nitrones with Isocyanates
作者:Ning Zou、Ji-Wen Jiao、Yu Feng、Chun-Hua Chen、Cui Liang、Gui-Fa Su、Dong-Liang Mo
DOI:10.1002/adsc.201700685
日期:2017.10.25
A metal‐free construction of highly diastereoselective nine‐membered heterocycles is described via the cycloaddition and rearrangement of N‐vinyl‐α,β‐unsaturated ketonitrones and isocyanates. Notably, the prepared nine‐membered heterocycles afforded 2,3‐dihydropyrrolizines under heating conditions. Mechanisticstudies showed that the nine‐membered rings might undergo decarboxylation, isomerization
beta-unsaturated oximes and internalalkynes has been developed using [Cp*RhCl2](2)-CsOPiv as the catalyst system. The present transformation is carried out by a redox-neutral sequence of vinylic C-H rhodation, alkyne insertion, and C-N bond formation of the putative vinyl rhodium intermediate with the oxime nitrogen, where the N-Obond of oxime derivatives could work as an internaloxidant to maintain the catalytic
使用 [Cp*RhCl2](2)-CsOPiv 作为催化剂体系开发了一种从 α、β-不饱和肟和内部炔烃合成高度取代的吡啶的方法。目前的转化是通过乙烯基 CH 化、炔插入和 CN 键形成的氧化还原中性序列与肟氮形成推定的乙烯基铑中间体,其中肟衍生物的 NO 键可以作为内部氧化剂来维持催化循环。
Anti-infective compounds
申请人:Brodin Priscille
公开号:US20110178077A1
公开(公告)日:2011-07-21
The present invention relates to small molecule compounds and their use in the treatment of bacterial infections, in particular Tuberculosis.