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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis, structure, and H2O2-dependent catalytic functions of disulfide-bridged dicopper(I) and related thioether-copper(I) and thioether-copper(II) complexes
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Synthesis, structure, and H2O2-dependent catalytic functions of disulfide-bridged dicopper(I) and related thioether-copper(I) and thioether-copper(II) complexes

机译:二硫桥联双铜(I)及其相关硫醚-铜(I)和硫醚-铜(II)配合物的合成,结构和H2O2依赖的催化功能

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A disulfide-bridged dicopper(I) complex, [Cu-2(Py2SSPy2)](ClO4)(2) (I) (Py2SSPy2 = bis{2-[N,N-bis(2-pyridylethyl)amino]-1,1-dimethylethyl}disulfide), a thioether-copper(I) complex, [Cu((PrSPy2)-Pr-i)](ClO4) (2) ((PrSPy2)-Pr-i = N-(2-isopropylthio-2-methyl)propyl-N,N-bis-2-(2-pyridyl)ethylamine), and a thioether-copper(II) complex, [Cu(PheSPy(2))(H2O)](ClO4)(2) (3) (PheSPy(2) = N-(2-methyl-2-phenethylthio)propyl-N,N-bis-2-(2-pyridyl)ethylamine), were newly synthesized by the reactions of Cu(ClO4)(2). 6H(2)O with a thiol ligand of Py2SH (N,N-bis[2-(2-pyridyl)ethyl]-1,1-dimethyl-2-mercaptoethylamine) and thioether ligands of (PrSPy2)-Pr-i and PheSPy(2), respectively, For complexes 1 and 2, X-ray analyses were performed. Complex 1 crystallizes in the triclinic space group P (1) over bar, and complex 2 crystallizes in the orthorhombic space group Pbca with the following unit cell parameters: for 1, a = 15.165 (3) Angstrom. b = 22.185 (4) Angstrom, c = 14.989 (3) Angstrom, alpha = 105.76 (1)degrees, beta = 90.82 (2)degrees, gamma = 75.23 (1)degrees, and Z = 2; for 2, a = 17.78 (2) Angstrom, b = 17.70.(1) Angstrom, c = 15.75 (1) Angstrom, and Z = 8. Complex 1 is the first structurally characterized example obtained by the redox reaction Cu(II) + RSH --> Cu(I) + RSSR and has two independent structures (la, Ib) which mainly differ in S-S bond distances, Cu(I) Cu(I) separations, and C-S-S-C dihedral angles of the disulfide units. The S-S bond distances of 2.088(7) Angstrom in 1a and 7.070(7) Angstrom in 1b are indicative of significant activation of the S-S bonds by the dicopper centers. Fragment molecular orbital (FMO) analyses and molecular orbital overlap population (MOOP) analyses based on the extended Huckel method clarify the preferable formation of the disulfide S-S bond in 1 rather than the formation of a thiolate-copper(II) complex within the Py2S- ligand framework. Catalytic functions of complexes 1-3 were investigated with peroxides (H2O2 and (BuOOH)-Bu-t) as oxidants. Complex 1 catalyzed the selective oxidation of cyclohexane to cyclohexanol and mediated the cyclohexene epoxidation in the presence of H2O2. A transient dark green intermediate observed in the reaction of 1 with H2O2 is characterized by UV-vis, EPR, and resonance Raman spectroscopies, identifying it as a Cu(II)-OOH species, 1(OOH). The resonance Raman features of the nu(O-O) bands at 822 and 836 cm(-1), which are red-shifted to 781 and 791 cm(-1), respectively, upon introduction of (H2O2)-O-18, are indicative of formation of two kinds of Cu-OOH species rather than the Fermi doublet and the significant weakening of the O-O bonds. These mechanistic studies demonstrate that by virtue of the electron-donating ability of the disulfide unit the Cu-OOH species can be actually activated for one-electron oxidation. which has been reported so far unfavorable for other vibrationally characterized Cu-OOH species. [References: 76]
机译:一种二硫键桥接的双铜(I)配合物,[Cu-2(Py2SSPy2)](ClO4)(2)(I)(Py2SSPy2 =双{2- [N,N-双(2-吡啶基乙基)氨基] -1, 1-二甲基乙基二硫化物),硫醚-铜(I)络合物,[Cu((PrSPy2)-Pr-i)](ClO4)(2)((PrSPy2)-Pr-i = N-(2-异丙基硫代- 2-甲基)丙基-N,N-双-2-(2-吡啶基)乙胺)和硫醚-铜(II)配合物,[Cu(PheSPy(2))(H2O)](ClO4)(2) (3)(PheSPy(2)= N-(2-甲基-2-苯乙硫基)丙基-N,N-双-2-(2-吡啶基)乙胺)是通过Cu(ClO4)( 2)。 6H(2)O,具有Py2SH(N,N-双[2-(2-吡啶基)乙基] -1,1-二甲基-2-巯基乙胺)的硫醇配体和(PrSPy2)-Pr-1的硫醚配体PheSPy(2)分别针对复合物1和2,进行了X射线分析。配合物1在棒上的三斜晶空间群P(1)中结晶,而配合物2在正交晶格空间群Pbca中结晶,晶胞参数如下:对于1,a = 15.165(3)埃。 b = 22.185(4)埃,c = 14.989(3)埃,α= 105.76(1)度,β= 90.82(2)度,γ= 75.23(1)度,Z = 2;对于2,a = 17.78(2)埃,b = 17.70。(1)埃,c = 15.75(1)埃,Z =8。配合物1是通过氧化还原反应Cu(II)获得的第一个结构特征实例+ RSH-> Cu(I)+ RSSR,具有两个独立的结构(Ia,Ib),主要不同之处在于SS键距,Cu(I),Cu(I)间距和二硫键的CSSC二面角。 1a中2.088(7)埃和1b中7.070(7)埃的S-S键距离表明双铜中心对S-S键的显着激活。基于扩展的Huckel方法的片段分子轨道(FMO)分析和分子轨道重叠种群(MOOP)分析阐明了在Py2S-中形成二硫键最好形成1个二硫键,而不是形成硫醇盐-铜(II)络合物配体框架。用过氧化物(H2O2和(BuOOH)-Bu-t)作为氧化剂研究了配合物1-3的催化功能。络合物1催化环己烷选择性氧化为环己醇,并在H2O2存在下介导环己烯环氧化。在1与H2O2的反应中观察到的一种瞬态深绿色中间体的特征在于UV-vis,EPR和共振拉曼光谱,将其鉴定为Cu(II)-OOH物种1(OOH)。引入(H2O2)-O-18时,nu(OO)波段在822和836 cm(-1)处的共振拉曼特征分别被红移到781和791 cm(-1)。表明形成了两种Cu-OOH物种而不是费米二重峰,并且OO键显着减弱。这些机理研究表明,借助于二硫键单元的供电子能力,Cu-OOH物种实际上可以被激活进行单电子氧化。迄今为止,已经报道了其对于其他振动表征的Cu-OOH物质是不利的。 [参考:76]

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