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位阻邻位取代的磷三蝶烯作为构型稳定的P-手性三芳基膦。

Sterically hindered ortho-substituted phosphatriptycenes as configurationally stable P-chirogenic triarylphosphines.

作者信息

Hu Lei, Mahaut Damien, Tumanov Nikolay, Wouters Johan, Collard Laurent, Robiette Raphaël, Berionni Guillaume

机构信息

Université catholique de Louvain, Institute of Condensed Matter and Nanosciences, Place Louis Pasteur 1 box L4.01.02, 1348 Louvain-la-Neuve, Belgium.

出版信息

Dalton Trans. 2021 Apr 14;50(14):4772-4777. doi: 10.1039/d1dt00816a. Epub 2021 Mar 17.

Abstract

ortho-Substituted and unsymmetrical 9-phospha-triptycenes were synthesized via two synthetic approaches involving densely functionalized ortho-halogenated triarylmethane or phosphine precursors. ortho-Substituents imposed a considerable steric shielding due to the tricyclic cage-shaped structure with the aryl rings p-systems orthogonal to the phosphorus electron pair. A series of Au(i) and Rh(i) complexes were analysed in the solid state to determine Tolman electronic parameters, cone angles and buried volumes of these unprecedented functionalized phosphines. Quantum chemical calculations of electronic and steric descriptors revealed that these cage-shaped phosphines are electron-poor and that single methyl substituent is enough to provide the largest effect on steric shielding reported so far in triarylphosphines. An unsymmetrically substituted 9-phosphatriptycene was resolved by chiral HPLC, opening the avenue towards stable P-chirogenic triarylphosphines with unlimited configurational stability for new catalyst development in asymmetric transition-metal catalysis.

摘要

通过两种合成方法,利用功能密集的邻卤代三芳基甲烷或膦前体合成了邻位取代和不对称的9-磷杂金刚烷。由于具有三环笼状结构,芳环的p-体系与磷电子对正交,邻位取代基施加了相当大的空间屏蔽。对一系列金(I)和铑(I)配合物进行了固态分析,以确定这些前所未有的功能化膦的托尔曼电子参数、锥角和埋藏体积。电子和空间描述符的量子化学计算表明,这些笼状膦是贫电子的,并且单个甲基取代基足以对三芳基膦中迄今为止报道的空间屏蔽产生最大影响。通过手性高效液相色谱法拆分了一种不对称取代的9-磷杂金刚烷,为新型催化剂开发中具有无限构型稳定性的稳定P-手性三芳基膦开辟了道路,用于不对称过渡金属催化。

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