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侧向大环隔室配体的合成:单核和双核铜(II)配合物的结构、磁性、电化学及催化研究

Synthesis of lateral macrobicyclic compartmental ligands: structural, magnetic, electrochemical, and catalytic studies of mono- and binuclear copper(II) complexes.

作者信息

Thirumavalavan M, Akilan P, Kandaswamy M, Chinnakali Kandaswamy, Kumar G Senthil, Fun H K

机构信息

Department of Inorganic Chemistry, University of Madras, Guindy Campus, Chennai 600 025, India.

出版信息

Inorg Chem. 2003 May 19;42(10):3308-17. doi: 10.1021/ic020633+.

Abstract

A series of putative mono- and binuclear copper(II) complexes, of general formulas CuL and Cu(2)L(2), respectively, have been synthesized from lateral macrocyclic ligands that have different compartments, originated from their corresponding precursor compounds (PC-1, 3,4:9,10-dibenzo-1,12-[N,N'-bis[(3-formyl-2-hydroxy-5-methyl)benzyl]diaza]-5,8-dioxacyclotetradecane; and PC-2, 3,4:9,10-dibenzo-1,12-[N,N'-bis[(3-formyl-2-hydroxy-5-methyl)benzyl]diaza]-5,8-dioxacyclopentadecane). The precursor compound PC-1 crystallized in the triclinic system with space group P(-)1. The mononuclear copper(II) complex CuL(1a) is crystallized in the monoclinic system with space group P2(1)/c. The binuclear copper(II) complex Cu(2)L(2c)(2) is crystallized in the triclinic system with space group P(-)1; the two Cu ions have two different geometries. Electrochemical studies evidenced that one quasi-reversible reduction wave (E(pc) = -0.78 to -0.87 V) for mononuclear complexes and two quasi-reversible one-electron-transfer reduction waves (E(1)(pc) = -0.83 to -0.92 V, E(2)(pc) = -1.07 to -1.38 V) for binuclear complexes are obtained in the cathodic region. Room-temperature magnetic-moment studies convey the presence of antiferromagnetic coupling in binuclear complexes [mu(eff) = (1.45-1.55)mu(B)], which is also suggested from the broad ESR spectra with g = 2.10-2.11, whereas mononuclear complexes show hyperfine splitting in ESR spectra and they have magnetic-moment values that are similar to the spin-only value [mu(eff) = (1.69-1.72)mu(B)]. Variable-temperature magnetic susceptibility study of the complex shows that the observed -2J value for the binuclear complex Cu(2)L(1b)(2) is 214 cm(-1). The observed initial rate-constant values of catechol oxidation, using complexes as catalysts, range from 4.89 x 10(-3) to 5.32 x 10(-2) min(-1) and the values are found to be higher for binuclear complexes than for the corresponding mononuclear complexes.

摘要

分别由具有不同间隔的侧向大环配体合成了一系列通式为CuLCu₂L₂的推定单核和双核铜(II)配合物,这些配体源自它们相应的前体化合物(PC-1,3,4:9,10-二苯并-1,12-[N,N'-双[(3-甲酰基-2-羟基-5-甲基)苄基]二氮杂]-5,8-二氧杂环十四烷;以及PC-2,3,4:9,10-二苯并-1,12-[N,N'-双[(3-甲酰基-2-羟基-5-甲基)苄基]二氮杂]-5,8-二氧杂环十五烷)。前体化合物PC-1在三斜晶系中结晶,空间群为P(-)1。单核铜(II)配合物CuL(1a)在单斜晶系中结晶,空间群为P2(1)/c。双核铜(II)配合物Cu₂L(2c)₂在三斜晶系中结晶,空间群为P(-)1;两个铜离子具有两种不同的几何构型。电化学研究表明,在阴极区域获得了单核配合物的一个准可逆还原波(E(pc)= -0.78至-0.87 V)和双核配合物的两个准可逆单电子转移还原波(E₁(pc)= -0.83至-0.92 V,E₂(pc)= -1.07至-1.38 V)。室温磁矩研究表明双核配合物[μ(eff) = (1.45 - 1.55)μB]中存在反铁磁耦合,这也从g = 2.10 - 2.11的宽ESR光谱中得到暗示,而单核配合物在ESR光谱中显示超精细分裂,并且它们的磁矩值与仅自旋值相似[μ(eff) = (1.69 - 1.72)μB]。该配合物的变温磁化率研究表明,双核配合物Cu₂L(1b)₂的观测-2J值为214 cm⁻¹。使用这些配合物作为催化剂时,邻苯二酚氧化的观测初始速率常数范围为4.89×10⁻³至5.32×10⁻² min⁻¹,并且发现双核配合物的值高于相应的单核配合物。

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