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Ligand effects on Ni-II-catalysed alkane-hydroxylation with m-CPBA

机译:配体对m-CPBA对Ni-II催化的烷烃羟基化的影响

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摘要

Nickel(II) complexes supported by a series of pyridylalkylamine ligands [tris(2-pyridylmethyl) amine (TPA; complexes 1a and 1b), tris[2-(2-pyridyl) ethyl] amine (TEPA; complexes 2a and 2b), 6-[N, N-bis(2-pyridylmethyl) aminomethyl]-2,4-di-tert-butylphenol ((Dtbp)Pym2H; complexes 3a and 3b), 6-[N, N-bis[2-(2-pyridyl) ethyl] aminomethyl]-2,4-di-tert-butylphenol ((Dtbp)Pye2H; complexes 4a and 4b), N-benzyl-bis(2-pyridylmethyl) amine ((Bz)Pym2; complex 5a) and N-benzyl-bis[ 2-( 2- pyridyl) ethyl] amine ((Bz)Pye2; complex 6a)] have been synthesized and structurally characterized by X-ray crystallographic analysis [ coordinating counter anion (co-ligand) of complexes na ( n = 1 - 6) is AcO- and that of complexes nb ( n = 1 - 4) is NO3-]. All complexes, except 1b, were obtained as a mononuclear nickel( II) complex exhibiting a distorted octahedral geometry, whereas complex 1b was isolated as a dinuclear nickel( II) complex bridged by two nitrate anions. Catalytic activity of the nickel( II) complexes were examined in the oxidation of cyclohexane with m-CPBA as an oxidant. In all cases, the oxygenation reaction proceeded catalytically to give cyclohexanol as the major product together with cyclohexanone as the minor product. The complexes containing the pyridylmethylamine (Pym) metal-binding group ( 1a, 3a, 5a) showed higher turnover number ( TON) than those containing the pyridylethylamine (Pye) metal-binding group ( 2a, 4a, 6a), whereas the alcohol/ketone (A/K) selectivity was much higher with the latter ( Pye system) than the former ( Pym system). On the other hand, the existence of the NO3- co-ligand (1b, 2b and 3b) caused a lag phase in the early stage of the catalytic reaction. Electronic and steric effects of the supporting ligands as well as the chemical behavior of the co-ligands on the catalytic activity of the nickel( II) complexes have been discussed on the basis of their X-ray structures.
机译:由一系列吡啶基烷基胺配体[三(2-吡啶基甲基)胺(TPA;配合物1a和1b),三[2-(2-吡啶基)乙基]胺(TEPA;配合物2a和2b)支撑的镍(II)配合物, 6- [N,N-双(2-吡啶基甲基)氨基甲基] -2,4-二叔丁基苯酚((Dtbp)Pym2H;配合物3a和3b),6- [N,N-双[2-(2 -吡啶基)乙基]氨基甲基] -2,4-二叔丁基苯酚((Dtbp)Pye2H;配合物4a和4b),N-苄基-双(2-吡啶基甲基)胺((Bz)Pym2;配合物5a)和已合成N-苄基-双[2-(2-吡啶基)乙基]胺((Bz)Pye2;配合物6a)],并通过X射线晶体学分析[配合物的配位阴离子(共配体) (n = 1-6)为AcO-,而配合物nb(n = 1-4)为NO3-]。除1b外,所有配合物均以单核镍(II)配合物的形式呈现出八面体几何形状的畸变,而配合物1b则以双核镍(II)配合物的形式被两个硝酸根阴离子桥接。在使用m-CPBA作为氧化剂的环己烷氧化反应中,研究了镍(II)配合物的催化活性。在所有情况下,氧合反应均进行催化,以得到环己醇作为主要产物以及环己酮作为次要产物。含有吡啶基甲胺(Pym)金属结合基团(1a,3a,5a)的配合物比含有吡啶基乙胺(Pye)金属结合基团(2a,4a,6a)的配合物具有更高的周转数(TON),而醇/后者(Pye系统)的酮(A / K)选择性比前者(Pym系统)高得多。另一方面,NO3-共配体(1b,2b和3b)的存在在催化反应的早期引起了滞后阶段。已经基于它们的X射线结构讨论了支持配体的电子和空间效应以及共配体的化学行为对镍(II)配合物的催化活性。

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