...
首页> 外文期刊>Catalysis science & technology >Ir-Biaryl phosphite-oxazoline catalyst libraries: a breakthrough in the asymmetric hydrogenation of challenging olefins
【24h】

Ir-Biaryl phosphite-oxazoline catalyst libraries: a breakthrough in the asymmetric hydrogenation of challenging olefins

机译:Ir-Biaryl phosphite-oxazoline催化剂库:一个突破的不对称氢化具有挑战性的烯烃

获取原文
获取原文并翻译 | 示例
           

摘要

Asymmetric hydrogenation (AH) is one of the most attractive methods for the preparation of enantiomerically pure compounds due to its operational simplicity and perfect atom economy. Despite the extensive research dedicated to the AH of alkenes and the important progress achieved, some issues still need to be solved. Most catalysts only work with a limited number of alkenes and each type of alkene needs a specific catalyst for optimal enantioselectivity. In this respect, the AH of functionalized alkenes is mostly carried out with Ru- and Rh-diphosphine catalysts, while the AH of olefins without a coordinative functional group is mainly carried out with Ir-P,N catalysts. The AH of functionalized olefins has been thoroughly studied for decades; there are, however, some substrate types that are still a challenge (e.g. cyclic beta-enamides). Compared to the AH of functionalized olefins, the reduction of unfunctionalized alkenes is much less developed. Most catalysts are still specific for the type of olefin geometry and its substitution pattern. Most successful cases have been reported for trisubstituted E-unfunctionalized alkenes and, to a lesser extent, for Z-trisubstituted, 1,1 '-disubstituted and tetrasubstituted olefins. Broad substrate scopes are desirable to reduce the time dedicated to ligand design and preparation. Our group contributed in this field with a series of improved ligand libraries that considerably expanded the substrate scope. In this minireview, we reveal our progress in the iridium-catalyzed AH of a broad range of unfunctionalized olefins and cyclic beta-enamides.
机译:不对称氢化(啊)是一种最有吸引力的制备方法光学纯化合物由于其操作简单和完美的原子经济。尽管广泛的研究致力于啊烯烃的重要进展实现,一些问题仍然需要解决。大多数催化剂只使用有限数量的烯烃和每种类型的烯烃需要一个特定的最优选择性的催化剂。尊重、官能团烯烃的啊主要是使用俄文和Rh-diphosphine催化剂,烯烃没有的啊协调功能组主要进行与Ir-P N催化剂。官能团烯烃已经彻底研究了几十年;(如基质类型仍然是一个挑战。循环beta-enamides)。官能团烯烃,减少unfunctionalized烯烃欠发达得多。大多数催化剂仍然是特定的类型烯烃几何及其替代模式。最成功的病例报告三代的E-unfunctionalized烯烃,程度较轻,Z-trisubstituted 1 1的双取代的和tetrasubstituted烯烃。广泛的底物范围是可取的减少配体的设计和时间准备。一系列的配体库的改善大大扩大了底物范围。这个小,我们显示我们的进步广泛的iridium-catalyzed啊unfunctionalized烯烃和循环beta-enamides。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号