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Binuclear palladium complexes supported by bridged pincer ligands

机译:桥式钳配体支持的双核钯配合物

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摘要

A series of binucleating ligands each containing two tridentate pincer sites based on a central, monoanionic aryl (C) donor flanked by neutral phosphinito (P) and imino (N) donors, [(PCN)-(CH_2)_n-(PCN)] (1), or a central, monoanionic amido (N) flanked by neutral phosphine (P) and imino donors (N), [(PNN)-(CH_2)_n-(PNN)] (4), are presented. The metalating sites were linked through the condensation of two equivalents of m-hydroxybenzaldehyde or the purposively built asymmetric diarylamine [(H)N(2-C(O)H-4-Me-C_6H_3)(2-P(iPr)_2-4-Me-C _6H_3)] (3) with primary α,ω-diamines (1,2-diaminoethane, n = 2; 1,4-diaminobutane, n = 4), which simultaneously constructed the imino arms and bridged the pincer cores. Ligands 1 and 4 were then used in the synthesis of neutral, square-planar palladium(II) complexes 5 and 6, [(PCN-C_n)Pd_2X_2, (PNN-C _n)Pd_2X_2; n = 2, 4; X = Cl, OAc, OTf]. The difference in the trans influence of the central donor was demonstrated through X-ray crystal structures of 5b-Cl, (PCN-C_4)Pd_2Cl _2, and 6b-Cl, (PNN-C_4)Pd_2Cl_2. The (PNN-C_n)Pd_2X_2 complexes (6) proved to be redox-active, presumably via oxidation of the ligand, and cyclic voltammetry illustrated the extent to which electronic communication between the two pincer sites is mediated by the length of the bridge between them. (PCN-C _n)Pd_2OTf_2 (5-OTf) and (PNN-C _n)Pd_2OTf_2 (6-OTf) complexes reacted with hydride donors such as Et_3SiH or β-hydride-containing alkoxides such as NaOiPr to generate bridging-hydride monocations [(PCN)Pd-H-Pd(PCN)- C_n][OTf] (5-H, n = 2, 4) and [(PNN)Pd-H-Pd(PNN)-C_2][OTf] (6a-H), where the supported Pd-Pd separation was also found to be affected by the bridge length. In the case of the (CH_2)_4-bridged (PNN-C_4)PdOTf (6b-OTf), a bridging-hydride monocation was not observed. Instead, the formation of [(PN(H)N)Pd-Pd(PNN)-C_4][OTf] (6b-H), protonated at the amido N of the ligand with a direct Pd(I)-Pd(I) bond, was recorded.
机译:一系列双核配体,每个配体均包含两个三齿钳制位点,它们基于一个中心的单阴离子芳基(C)供体,其侧翼为中性膦(P)和亚氨基(N)供体,[(PCN)-(CH_2)_n-(PCN)] (1)或中间为中性膦(P)和亚氨基供体(N)的中央单阴离子酰胺(N),[(PNN)-(CH_2)_n-(PNN)](4)。通过两个当量的间羟基苯甲醛或有意建立的不对称二芳基胺[(H)N(2-C(O)H-4-Me-C_6H_3)(2-P(iPr)_2- 4-Me-C _6H_3)](3)与伯α,ω-二胺(1,2-二氨基乙烷,n = 2; 1,4-二氨基丁烷,n = 4),它们同时构成了亚氨基臂并桥接了钳子核心。然后将配体1和4用于合成中性的方形方形钯(II)配合物5和6 [[(PCN-C_n)Pd_2X_2,(PNN-C _n)Pd_2X_2; n = 2,4; X = Cl,OAc,OTf]。通过5b-Cl(PCN-C_4)Pd_2Cl _2和6b-Cl(PNN-C_4)Pd_2Cl_2的X射线晶体结构证明了中央施主的反式影响的差异。 (PNN-C_n)Pd_2X_2配合物(6)被证明具有氧化还原活性,大概是通过配体的氧化作用,循环伏安法说明了两个钳位点之间的电子通讯受其间桥长介导的程度。 (PCN-C _n)Pd_2OTf_2(5-OTf)和(PNN-C _n)Pd_2OTf_2(6-OTf)络合物与氢化物供体(如Et_3SiH)或含β-氢化物的醇盐(如NaOiPr)反应,生成桥接氢化物单阳离子[ (PCN)Pd-H-Pd(PCN)-C_n] [OTf](5-H,n = 2、4)和[(PNN)Pd-H-Pd(PNN)-C_2] [OTf](6a- H),其中还发现支持的Pd-Pd分离受电桥长度的影响。在(CH_2)_4-桥联的(PNN-C_4)PdOTf(6b-OTf)的情况下,未观察到桥接氢化物单阳离子。相反,[(PN(H)N)Pd-Pd(PNN)-C_4] [OTf](6b-H)的形成在配体的酰胺N处以直接Pd(I)-Pd(I )债券,被记录下来。

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