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首页> 外文期刊>Organometallics >Models for solvation of zirconocene cations: Synthesis, reactivity, and computational studies of phenylsilyl-substituted cationic and dicationic zirconocene compoundsu
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Models for solvation of zirconocene cations: Synthesis, reactivity, and computational studies of phenylsilyl-substituted cationic and dicationic zirconocene compoundsu

机译:锆茂阳离子的溶剂化模型:苯甲硅烷基取代的阳离子锆和阳离子锆茂化合物的合成,反应性和计算研究

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The reactions of the zirconocene compounds [(eta(5)-C5H5)(eta(5)-C5H4SiMe2C6H5)ZrMe2] (1) and [(eta 5C5H4SiMe2C6H4Me 2ZrMe2] (2) with either B(C6F5)(3) or the trityl salt [Ph3C](+)[B(C6F5)(4)](-) in CD2Cl2 were monitored by NMR spectroscopy. In the case of the cationic products [(eta(5)-C5H5)(eta(5)-C5H4SiMe2C6H5)ZrMe](+)[ MeB(C6F5)(3)](-) (4a) and [(eta(5)-C5H4SiMe2C6H4Me)(2)ZrMe](+) X- ( 5a, X) [MeB(C6F5)(3)]-; 5b, X = [ B( C6F5) 4]-), coordination of the arene, bonded through Si to the cyclopentadienyl ring, to the cationic zirconium was observed. However, this coordination is rather weak, and stronger Lewis donors such as the anion or the starting material replace the coordinated arene moiety. The solid-state structures of 1 and 2 were determined by X-ray crystallography. Density functional computations (B3LYP/ECP1 and B3LYP/II level) have revealed that the phenyl groups in [(eta(5)-C5H5)(eta-C5H4SiMe2C6H5)ZrMe](+) (10), [(eta(5)-C5H4SiMe2C6H4Me)(2)Zr](2+) (11), and [(eta(5)-C5H4SiMe2C6H5)(2)Zr](2+) (12) are coordinated via one of the arene carbon atoms. The structural assignments are supported by the good agreement between the experimental NMR shifts and the computed (GIAO-B3LYP/II level) shifts in the case of the cationic compound (10). The structure of the dicationic compound 11 differs significantly from that of 12, indicating a strong influence of the para substituent of the arene ring. Compounds 1 and 2 validate previously suggested models for solvent (arene) adducts in Kaminsky-type polymerization.
机译:锆茂化合物[(eta(5)-C5H5)(eta(5)-C5H4SiMe2C6H5)ZrMe2](1)和[(eta 5C5H4SiMe2C6H4Me 2ZrMe2](2)与B(C6F5)(3)或三苯甲基的反应用NMR光谱法监测CD2Cl2中的盐[Ph3C](+)[B(C6F5)(4)](-),对于阳离子产物[(eta(5)-C5H5)(eta(5)-C5H4SiMe2C6H5 )ZrMe](+)[MeB(C6F5)(3)](-)(4a)和[(eta(5)-C5H4SiMe2C6H4Me)(2)ZrMe](+)X-(5a,X)[MeB(C6F5 )(3)]-; 5b,X = [B(C 6 F 5)4]-),观察到通过Si键合到环戊二烯基环上的芳烃与阳离子锆的配位。但是,这种配位相当弱,并且更强的路易斯供体(例如阴离子或起始材料)取代了配位的芳烃部分。通过X射线晶体学测定1和2的固态结构。密度泛函计算(B3LYP / ECP1和B3LYP / II级)显示[[eta(5)-C5H5)(eta-C5H4SiMe2C6H5)ZrMe](+)(10),[(eta(5)- C 5 H 4 SiMe 2 C 6 H 4 Me)(2)Zr](2 +)(11)和[(eta(5)-C5H4SiMe 2 C 6 H 5)(2)Zr](2 +)(12)通过芳烃碳原子之一配位。在阳离子化合物(10)的情况下,实验核磁共振位移与计算得出的(GIAO-B3LYP / II能级)位移之间的良好一致性支持了结构分配。两性化合物11的结构与12的结构显着不同,表明芳烃环的对位取代基的影响很大。化合物1和2验证了先前建议的Kaminsky型聚合中溶剂(芳烃)加合物的模型。

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