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首页> 外文期刊>Chemistry - A European Journal >Bis(phosphinimino)methanide Borohydride Complexes of the Rare-Earth Elements as Initiators for the Ring-Opening Polymerization of ε-Caprolactone: Combined Experimental and Computational Investigations
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Bis(phosphinimino)methanide Borohydride Complexes of the Rare-Earth Elements as Initiators for the Ring-Opening Polymerization of ε-Caprolactone: Combined Experimental and Computational Investigations

机译:稀土元素双(膦基氨基)甲烷甲烷硼氢化物作为ε-己内酯开环聚合的引发剂:结合实验和计算研究

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Rare-earth-metal borohydrides are known to be efficient catalysts for the polymerization of apolar and polar monomers. The bis-borohydrides [{CH(PPh2NSiMe3)2}La(BH4)2(THF)] and [{CH(PPh2NSiMe3)2}Ln(BH4)2] (Ln=Y, Lu) have been synthesized by two different synthetic routes. The lanthanum and the lutetium complexes were prepared from [Ln(BH4)3(THF)3] and K{CH(PPh2NSiMe3)2}, whereas the yttrium analogue was obtained from in situ prepared [{CH(PPh2NSiMe3)2}YCl2]2 and NaBH4. All new compounds were characterized by standard analytical/spectroscopic techniques, and the solid-state structures were established by single-crystal X-ray diffraction. The ring-opening polymerization (ROP) of ε-caprolactone initiated by [{CH(PPh2NSiMe3)2}La(BH4)2(THF)] and [{CH(PPh2NSiMe3)2}Ln(BH4)2] (Ln=Y, Lu) was studied. At 0 °C the molar mass distributions determined were the narrowest values (M̄w/M̄n=1.06–1.11) ever obtained for the ROP of ε-caprolactone initiated by rare-earth-metal borohydride species. DFT investigations of the reaction mechanism indicate that this type of complex reacts in an unprecedented manner with the first BH activation being achieved within two steps. This particularity has been attributed to the metallic fragment based on the natural bond order analysis.
机译:已知稀土金属硼氢化物是用于非极性和极性单体聚合的有效催化剂。双硼氢化物[{CH(PPh 2 NSiMe 3 2 } La(BH 4 2 (THF)]和[{CH(PPh 2 NSiMe 3 2 } Ln(BH 4 2 ](Ln = Y,Lu)是通过两种不同的合成途径合成的。由[Ln(BH 4 3 (THF) 3 ]和K {CH(PPh 2 NSiMe 3 2 },而钇类似物是从原位制备的[{CH(PPh 2 NSiMe 3 2 } YCl 2 ] 2 和NaBH 4 。所有新化合物均通过标准分析/光谱技术进行表征,并通过单晶X射线衍射建立了固态结构。由[{CH(PPh 2 NSiMe 3 2 } La(BH <引发的)ε-己内酯的开环聚合sub> 4 2 (THF)]和[{CH(PPh 2 NSiMe 3 2 } Ln(BH 4 2 ](Ln = Y,Lu)进行了研究。在0°C下,由稀有引发的ε-己内酯的ROP获得的最小摩尔质量分布为(M( w /M̄ n = 1.06–1.11)族金属硼氢化物。 DFT对反应机理的研究表明,这种类型的络合物以前所未有的方式反应,在两个步骤内实现了首次BH活化。这种特殊性已归因于基于自然键序分析的金属碎片。

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