...
首页> 外文期刊>Molecular physics >A theoretical investigation of the oxidation states of palladium complexes and their role in the carbonylation reaction
【24h】

A theoretical investigation of the oxidation states of palladium complexes and their role in the carbonylation reaction

机译:钯配合物氧化态及其在羰基化反应中的作用的理论研究

获取原文
获取原文并翻译 | 示例

摘要

Two different, yet related, topics are discussed: (i) the reduction of palladium (II) in Pd(OAc)2 complexes reacting with phenyl phosphines and leading to Pd(0) phosphine complexes, and (ii) the carbonylation reaction of allyl chlorides catalyzed by these Pd(0) species. The results show that the overall reduction is an exothermic process that can be accomplished along two different reaction paths, one being clearly favoured over the other. Similarly, three different channels have been determined for the carbonylation reaction that primarily differ in the timing and the way in which the reacting species bind the metal. In the first path (the σ-path), the allyl fragment interacts very weakly with the metal, whereas the CO molecule strongly binds it and reacts with the allyl. The second channel (the π-η~3 pathway) is characterized by a π-η~3 interaction between the allyl fragment and the palladium, to which the CO molecule binds, before the two units react affording the product. In both cases, two consecutive migrations of the chlorine 'assist' the course of the reaction. In the third case (the η~2 pathway) the allyl fragment initially enters the palladium coordination sphere, and the CO molecule then simultaneously binds it and the phosphorous atom of one phosphine ligand. The first two paths are favoured.
机译:讨论了两个不同但相关的主题:(i)还原与苯基膦反应并生成Pd(0)膦络合物的Pd(OAc)2络合物中的钯(II),以及(ii)烯丙基的羰基化反应这些Pd(0)物种催化的氯化物。结果表明,总还原反应是一个放热过程,可以通过两种不同的反应途径来完成,其中一种途径明显优于另一种途径。类似地,已经确定了用于羰基化反应的三个不同的通道,它们主要在反应物质结合金属的时间和方式上不同。在第一个路径(σ路径)中,烯丙基片段与金属的相互作用非常弱,而CO分子与金属牢固结合并与烯丙基反应。第二个通道(π-η〜3途径)的特征是烯丙基片段与钯分子之间的π-η〜3相互作用,在两个单元反应生成产物之前,CO分子与钯相互作用。在这两种情况下,氯的两次连续迁移会“辅助”反应过程。在第三种情况下(η〜2途径),烯丙基片段首先进入钯配位球,然后CO分子同时将其与一个膦配体的磷原子结合。前两条路径是有利的。

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