遇见数据集

Combining the Reactivity Properties of PCy<sub>3</sub> and P<i>t</i>Bu<sub>3</sub> into a Single Ligand, P(<i>i</i>Pr)(<i>t</i>Bu)<sub>2</sub>. Reaction via Mono- or Bisphosphine Palladium(0) Centers and Palladium(I) Dimer Formation

收藏
NIAID Data Ecosystem2026-03-09 收录
官方服务:

资源简介:

Trialkylphosphine ligands are ubiquitous in catalysis. Via modulation of the steric bulk of these ligands, two central aspects that dictate reactivity and selectivity in catalysis can be controlled: i.e., the coordination sphere and favored oxidation state of the reactive metal center. Within this class of ligands, tricyclohexylphosphine (PCy3) and tri-tert-butylphosphine (PtBu3) are most widely used in catalysis. While the smaller PCy3 favors reactivity via Pd bisphosphine species with the test substrate 4-chlorophenyl triflate 1 and does not form dinuclear Pd­(I) complexes upon oxidation of Pd(0), PtBu3 reacts via a monophosphine-ligated Pd complex with 1 and forms dinuclear Pd­(I) complexes on oxidation. We herein report that the hybrid ligand P­(iPr)­(tBu)2, characterized by a cone angle that is between those of PCy3 and PtBu3, features all of these reactivity properties in a single scaffold. This is exemplified in chemoselectivity studies with test system 1, in which the site selectivity could be readily modulated. The novel Pd­(I) dimer {[P­(iPr)­(tBu)2]­PdI}2 has also been synthesized.

创建时间:
2016-02-16
二维码
社区交流群
二维码
科研交流群
商业服务