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Tri(1-adamantyl) phosphine: Exceptional Catalytic Effects Enabled by the Synergy of Chemical Stability, Donicity, and Polarizability

机译:TRI(1-亚烷基)膦:化学稳定性,捐赠和极化性的协同作用使得具有特殊催化作用

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摘要

Tri(1-adamantyl) phosphine, a simple yet long-absent homoleptic phosphine, has finally been prepared. The simplicity of this compound beguiles its exceptional properties. The electron-releasing character eclipses all other alkylphosphines. The phosphine geometry and overall size are also more compact than anticipated, which may occur as a result of dispersion forces. We believe the donicity, marked resistance towards cyclometallation or P-C bond scission, and also substantial polarizability engendered by the three diamondoid fragments together account for the phenomenal performance of Pd-PAd(3) catalysts during Suzuki-Miyaura coupling reactions. A correlation analysis is also described that provides support for polarizability as a potentially general influence on the properties of tertiary phosphines. 1 Introduction 2 Synthesis of Tri(1-adamantyl) phosphine 3 Reactions of Tri(1-adamantyl) phosphine Palladium Complexes 4 Electronic and Steric Properties of Tri(1-adamantyl) phosphine 5 Conclusion
机译:TRI(1-亚氨酰基)膦,一种简单而长的杂散膦,最终已经制备。这种复合的简单性概述了其特殊的性质。电子释放特征蚀地蚀地释放所有其他烷基膦。膦几何形状和整体尺寸也比预期更紧凑,这可能由于分散力而发生。我们相信捐献,标记抗环核或p-C键的抗性,以及三种类曲面碎片的显着极化性,同时占Suzuki-Miyaura偶联反应期间Pd-pad(3)催化剂的现象性能。还描述了相关性分析,其提供了对极化性的支持,作为对叔膦的性质的潜在影响。 1引言2合成三(1-亚氨烷基)膦3的三氨基膦钯复合物4的TRI(1-亚氨基antyl)膦5结论的电子和空间性质

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