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首页> 外文期刊>Chemical science >Pd-eta(3)-C6H9 complexes of the Trost modular ligand: high nuclearity columnar aggregation controlled by concentration, solvent and counterion
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Pd-eta(3)-C6H9 complexes of the Trost modular ligand: high nuclearity columnar aggregation controlled by concentration, solvent and counterion

机译:Trost模块化配体的Pd-eta(3)-C6H9配合物:高核柱状聚集,受浓度,溶剂和抗衡离子控制

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摘要

Under optimised conditions, the Trost modular ligand (TML) series induces high levels of asymmetric induction in an extraordinarily wide range of reactions involving palladium pi-allyl intermediates. Prior mechanistic investigations into reactions involving Pd-eta(3)-C6H9 intermediates have focussed on the monomeric 13-membered ring formed via P, P-chelation of the ligand to Pd. However, it is also recognised that ring-opening oligomerisation provides a pool of high nuclearity Pd-eta(3)-C6H9 species that, by affording a low level, or even the opposite sense, of asymmetric induction relative to the mononuclear species, are responsible for a reduction in selectivity under non-optimised conditions. Herein we describe an investigation by NMR spectroscopy, molecular mechanics, molecular dynamics, and small-angle neutron scattering (SANS), of a Pd-eta(3)-C6H9 cation bearing the 1,2-diaminocyclohexane TML ligand (2). Using both nondeuterated and perdeuterated (D-47) isotopologues of the resulting complexes ([1](+)), we show that a two-stage oligomerisation-aggregation process forms self assembled cylindrical aggregates of very high nuclearity (up to 56 Pd centres). We also investigate how concentration, solvent and counter-anion all modulate the extent of oligomerisation.
机译:在优化条件下,Trost模块化配体(TML)系列在涉及钯pi-烯丙基中间体的异常广泛的反应中诱导了高水平的不对称诱导。对涉及Pd-eta(3)-C6H9中间体的反应的先前机理研究集中于通过配体与Pd的P,P螯合形成的单体13元环。但是,还应认识到,开环低聚提供了高核Pd-eta(3)-C6H9物质,这些物质通过提供相对于单核物质而言低水平甚至是相反的方向的不对称诱导,是导致非最佳条件下选择性的降低。在这里,我们描述了通过NMR光谱学,分子力学,分子动力学和小角中子散射(SANS),对带有1,2-二氨基环己烷TML配体(2)的Pd-eta(3)-C6H9阳离子的研究。使用得到的配合物([1](+))的非氘代和全氘代(D-47)同位素,我们显示了一个两阶段的低聚-聚集过程形成了具有很高核度的自组装圆柱状聚集体(最多56个Pd中心) )。我们还研究了浓度,溶剂和抗衡阴离子如何调节低聚程度。

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