二(膦酰亚胺)甲基配体负载C2和Cs对称锌配合物的合成及其在开环聚合催化中的应用

M. Hill, P. Hitchcock
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引用次数: 71

摘要

本文报道了由双(膦酰亚胺)甲基配体支撑的锌配合物的合成路线。使用了两个芳基取代的配体前体,[CH2(Ph2PNC6H2Me3-2,4,6)2], 1和[CH2(Ph2PNPh)(Ph2PNC6H2Me3-2,4,6)], 2。第二个例子是第一个不对称的二(膦酰亚胺)甲烷的例子。这些配体转化为三坐标RZnX配合物(R = 1;X = Me, N(SiMe3)2;R = 2;X = Me)在甲苯中与ZnMe2或Zn[N(SiMe3)2]2反应,在溶液中具有C2或Cs对称。通过x射线衍射分析,这三种衍生物均以三坐标单体的形式存在于固体中。这些化合物与大体积的苯酚2,4- tbu2c6h3oh或三苯基甲醇进行质子分解,分离出一系列三坐标芳氧基或烷氧锌衍生物。相反,与空间要求较低的醇反应导致双(膦酰亚胺)甲基配体的质子化。RZnMe (R = 1)与三苯基硅醇反应得到了类似的结果,该产物是第一个被结构表征的双(三有机硅氧基)锌化合物。对所有化合物的开环聚合催化活性进行了测试。芳氧基和三苯基甲氧基衍生物是活性催化剂;然而,没有证据表明真正的“活”行为或立体控制非对映体插入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis of C2 and Cs symmetric zinc complexes supported by bis(phosphinimino)methyl ligands and their use in ring opening polymerisation catalysis
Synthetic routes to zinc complexes supported by sterically demanding bis(phosphinimino)methyl ligands are reported. Two aryl-substituted ligand precursors have been utilised, [CH2(Ph2PNC6H2Me3-2,4,6)2], 1, and [CH2(Ph2PNPh)(Ph2PNC6H2Me3-2,4,6)], 2. The second of these is the first example of an asymmetric bis(phosphinimino)methane. These ligands are converted to three-coordinate RZnX complexes (R = 1; X = Me, N(SiMe3)2; R = 2; X = Me) with either C2 or Cs symmetry in solution by reaction with either ZnMe2 or Zn[N(SiMe3)2]2 in toluene. All three derivatives have been shown to exist as three-coordinate monomers in the solid state by X-ray diffraction analysis. Protonolysis of these compounds with the bulky phenol 2,4-tBu2C6H3OH or triphenylmethanol resulted in the isolation of a series of three-coordinate aryloxy or alkoxyzinc derivatives. In contrast, reaction with less sterically demanding alcohols resulted in protonation of the bis(phosphinimino)methyl ligand. A similar result was obtained from reaction of RZnMe (R = 1) and triphenylsilanol and the product is the first example of a bis(triorganosiloxy)zinc compound to be structurally characterised. All the compounds have been examined for activity in ring opening polymerisation catalysis of rac-lactide. The aryloxy and triphenylmethoxy derivatives are active catalysts; however, no evidence of true ‘living’ behaviour or stereocontrol of diastereomer insertion has been observed.
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