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Some transition metal complexes derived from mono- and di-ethynyl perfluorobenzenes

机译:某些衍生自单乙炔基和二乙炔基全氟苯的过渡金属配合物

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摘要

Transition metal alkynyl complexes containing perfluoroaryl groups have been prepared directly from trimethylsilyl-protected mono- and di-ethynyl perfluoroarenes by simple desilylation/metallation reaction sequences. Reactions between Me3SiC CC6F5 and RuCl(dppe)Cp'[Cp' = Cp, Cp*] in the presence of KF in MeOH give the monoruthenium complexes Ru(C CC6F5)(dppe)Cp'[Cp' = Cp (2); Cp* (3)], which are related to the known compound Ru(C CC6F5)(PPh3)(2)Cp (1). Treatment of Me3SiC CC6F5 with Pt-2(mu-dppm)(2)Cl-2 in the presence of NaOMe in MeOH gave the bis(alkynyl) complex Pt-2(mu-dppm)(2)(C CC6F5)(2) (4). The Pd(0)/Cu(I)-catalysed reactions between Au(C CC6F5)(PPh3) and Mo( CBr)(CO)(2) Tp* [Tp* = hydridotris(3.5-dimethylpyrazoyl)borate], Co-3(mu(3)-CBr)(mu-dppm)(CO)(7) or IC CFc [Fc = (eta(5)-C5H4)FeCp] afford Mo( CC CC6F5)(CO)(2)Tp* (5), Co-3(mu 3-CC CC6F5)(mu-dppm)(CO)(7) (6) and FcC CC CC6F5 (7), respectively. The diruthenium complexes 1,4-{Cp'(PP)RuC C}(2)C6F4 [(PP)Cp'=(PPh3)(2)Cp (8); (dppe)Cp (9); (dppe)Cp* (10)] are prepared from 1,4-(Me3SiC C)(2)C6F4 in a manner similar to that described for the monoruthenium complexes 1-3. The non-fluorinated complexes 1,4-{Cp'(PP)RuC C}(2)C6H4 [(PP)Cp' = (PPh3)(2)Cp (11); ( dppe) Cp (12); ( dppe) Cp* (13)], prepared for comparison, are obtained from 1,4-(Me3SiC C)(2)C6H4. Spectro-electrochemical studies of the ruthenium aryl and arylene alkynyl complexes 2-3 and 8-13, together with DFT-based computational studies on suitable model systems, indicate that perfluorination of the aromatic ring has little effect on the electronic structures of these compounds, and that the frontier orbitals have appreciable diethynylphenylene character. Molecular structure determinations are reported for the fluoroaromatic complexes 1, 2, 3, 6 and 10.
机译:含有全氟芳基的过渡金属炔基络合物已经由三甲基甲硅烷基保护的单乙炔基和二乙炔基全氟芳烃通过简单的甲硅烷基化/金属化反应顺序直接制备。 Me3SiC CC6F5和RuCl(dppe)Cp'[Cp'= Cp,Cp *]之间的反应在MeOH中存在KF时得到单钌络合物Ru(C CC6F5)(dppe)Cp'[Cp'= Cp(2); Cp *(3)],与已知化合物Ru(C CC6F5)(PPh3)(2)Cp(1)有关。在NaOMe的MeOH中用Pt-2(μ-dppm)(2)Cl-2处理Me3SiC CC6F5得到双(炔基)配合物Pt-2(μ-dppm)(2)(C CC6F5)(2 )(4)。 Pd(0)/ Cu(I)催化的Au(C CC6F5)(PPh3)和Mo(CBr)(CO)(2)Tp * [Tp * =氢化三(3.5-二甲基吡唑酰基)硼酸酯],Co- 3(mu(3)-CBr)(mu-dppm)(CO)(7)或IC CFc [Fc =(eta(5)-C5H4)FeCp]得到Mo(CC CC6F5)(CO)(2)Tp * (5),分别是Co-3(μ3-CC CC6F5)(μ-dppm)(CO)(7)(6)和FcC CC CC6F5(7)。二钌络合物1,4- {Cp'(PP)RuC C}(2)C6F4 [(PP)Cp'=(PPh3)(2)Cp(8); (dppe)Cp(9); (dppe)Cp *(10)]由1,4-(Me 3 SiC C)(2)C 6 F 4制备,类似于对单钌配合物1-3所述的方法。非氟化配合物1,4- {Cp'(PP)RuC C}(2)C6H4 [(PP)Cp'=(PPh3)(2)Cp(11); (dppe)Cp(12);为了比较而准备的(dppe)Cp *(13)由1,4-(Me 3 SiC C)(2)C 6 H 4获得。钌芳基和亚芳基炔基配合物2-3和8-13的光谱电化学研究,以及基于DFT的适用模型系统的计算研究表明,芳环的全氟化对这些化合物的电子结构几乎没有影响,并且边界轨道具有明显的二乙炔基亚苯基性质。报道了氟代芳香族配合物1、2、3、6和10的分子结构测定。

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