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首页> 外文期刊>Journal of Organometallic Chemistry >Preparation of models and oligomers of metal alkynyls NMR, GPC and X-ray structural characterization of building blocks for the construction of molecular devices
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Preparation of models and oligomers of metal alkynyls NMR, GPC and X-ray structural characterization of building blocks for the construction of molecular devices

机译:制备金属炔基的模型和低聚物NMR,GPC和X射线结构表征用于构建分子器件的结构单元

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A systematic study has been carried out for the use of the palladium-based Extended One Pot (EOP) synthetic protocol toward the preparation of metal alkynyl oligomers of general formula [-Cequivalent toC-Ar-Cequivalent toC-M(L)(m)-](n) (M = Pt, Pd). Model compounds of type trans-M(PBu3)(2)(Cequivalent toCC(6)H(5))(2) have been prepared by the reaction of tributyltinethynylbenzene with trans-M(PBu3)(2)Cl-2, in the absence of palladium catalysis, since the presence of catalytic Pd(PPh3)4 yields reaction mixtures containing starting material, product and intermediate complex trans-MCl(PBu3)(2)(Cequivalent toCC(6)H(5)). Palladium catalysis has been used for the formation of the bistinacetylide compounds Bu3Sn-Cequivalent toC-Ar-Cequivalent toC-SnBu3 (Ar = C6H4; bis(2,5-n-octyloxy)C6H4). Subsequent coupling of these compounds with MCl2(PBu3)(2) in the absence of palladium catalyst yields metal alkynyl oligomers. Comparison of P-31-NMR and gel permeation chromatography (GPC) analyses indicates that the GPC technique represents a reliable method to estimate polymer chain lengths for polymers bearing branched aromatic spacers, in spite of the rigid-rod shape of the polymer backbone. Single crystal X-ray determinations of model compounds demonstrate the essential role of side substituents in the aromatic ring to control the supramolecular order and, as a consequence, the optoelectronic properties of materials. (C) 2003 Elsevier B.V. All rights reserved. [References: 65]
机译:进行了系统的研究,以使用基于钯的扩展一锅(EOP)合成规程来制备通式为[-C等同于C-Ar-C等同于C-M(L)(m)的金属炔基低聚物-](n)(M = Pt,Pd)。反式-M(PBu3)(2)(相当于CC(6)H(5))(2)类型的模型化合物已通过三丁基乙炔基苯与反式-M(PBu3)(2)Cl-2的反应制得没有钯催化,因为催化Pd(PPh3)4的存在会产生包含起始原料,产物和中间体复合物反式MCl(PBu3)(2)(相当于CC(6)H(5))的反应混合物。钯催化已用于形成二炔乙炔化合物Bu3Sn-等同于C-Ar-等同于C-SnBu3(Ar = C6H4;双(2,5-正辛氧基)C6H4)。随后在不存在钯催化剂的情况下,将这些化合物与MCl2(PBu3)(2)偶联,得到金属炔基低聚物。 P-31-NMR和凝胶渗透色谱(GPC)分析的比较表明,尽管聚合物主链呈刚性杆状,但GPC技术代表了一种评估带有支链芳族间隔基的聚合物的聚合物链长的可靠方法。对模型化合物的单晶X射线测定证明了芳环中侧取代基在控制超分子序以及因此材料的光电特性方面的重要作用。 (C)2003 Elsevier B.V.保留所有权利。 [参考:65]

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