Mukherjee Arindam, Rudra Indranil, Naik Sunil G, Ramasesha Suryanarayanasastry, Nethaji Munirathinam, Chakravarty Akhil R
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore-560012, India.
Inorg Chem. 2003 Sep 8;42(18):5660-8. doi: 10.1021/ic034565i.
Two new angular trinuclear copper(II) complexes of formulation Cu(3)(HL)LL', where L' is imidazole (Him, 1) or 1-methylimidazole (1-MeIm, 2) and H(3)L is a Schiff base obtained from the condensation of salicylaldehyde and 1,3-diaminopropan-2-ol (2:1 mole ratio), are prepared from a reaction of [Cu(2)L(mu-Br)] and [Cu(HL)] in the presence of L' and isolated as perchlorate salts. The crystal structures of 1 and 2 consist of a trinuclear copper(II) unit formed by the covalent linkage of monomeric type-2 mimic and dimeric type-3 mimic precursor complexes to give an angular arrangement of the metal atoms in the core which is a model for the active site structure of blue multicopper oxidases. In 1 and 2, the coordination geometry of two terminal copper atoms is distorted square-planar. The central copper has a distorted square-pyramidal (4 + 1) geometry. The mean Cu...Cu distance is approximately 3.3 A. The complex has a diphenoxo-bridged dicopper(II) unit with the phenoxo oxygen atoms showing a planar geometry. In addition, the complex has an endogenous alkoxo-bridged dicopper(II) unit showing a pyramidal geometry for the oxygen atom. The 1:1 electrolytic complexes show a d-d band at 607 nm. Cyclic voltammetry of the complexes in MeCN containing 0.1 M TBAP using a glassy carbon working electrode displays a Cu(3)(II)/Cu(2)(II)Cu(I) couple near -1.0 V (vs SCE). The variable temperature magnetic susceptibility measurements in the range 300-18 K show antiferromagnetic coupling in the complexes giving magnetic moments of approximately 3.0 mu(B) at 300 K and approximately 2.1 mu(B) at 18 K for the tricopper(II) unit. The experimental susceptibility data are theoretically fitted using a model with Heisenberg spin-(1)/(2) Hamiltonian for a trimer of spin-(1)/(2) copper(II) ions having two exchange parameters involving the alkoxo-bridged dicopper(II) (J1) and the diphenoxo-bridged dicopper(II) (J2) units, giving J1 and J2 values of -82.7, -73 cm(-1) for 1 and -98.3, -46.1 cm(-1) for 2, respectively. The structural features indicate a higher magnitude of anitiferromagnetic coupling in the alkoxo-bridged unit based on the greater value of the Cu-O-Cu angle in comparison to the diphenoxo-bridged unit. The core structures of 1 and 2 compare well with the first generation model complexes for the active site structure of multicopper oxidases in the oxidized form. The crystal structure of 1 exhibits a lamellar structure with a gap of approximately 7 A containing water molecules in the interlamellar space. Complex 2 forms a hexanuclear species due to intermolecular hydrogen bonding interactions involving two trimeric units. The crystal packing diagram of 2 displays formation of a three-dimensional framework with cavities containing the perchlorate anions.
制备了两种新的通式为Cu(3)(HL)LL'的角形三核铜(II)配合物,其中L'为咪唑(Him,1)或1 - 甲基咪唑(1 - MeIm,2),H(3)L是由水杨醛与1,3 - 二氨基丙 - 2 - 醇按2:1摩尔比缩合得到的席夫碱。它们是通过[Cu(2)L(μ - Br)]与[Cu(HL)]在L'存在下反应制得的,并以高氯酸盐形式分离出来。配合物1和2的晶体结构由一个三核铜(II)单元组成,该单元通过单体型2模拟物和二聚体型3模拟物前体配合物的共价连接形成,使得核心中的金属原子呈角形排列,这是蓝色多铜氧化酶活性位点结构的一个模型。在配合物1和2中,两个末端铜原子的配位几何形状为扭曲的平面正方形。中心铜具有扭曲的四方锥(4 + 1)几何形状。平均Cu...Cu距离约为3.3 Å。该配合物有一个双苯氧基桥联的二铜(II)单元,其苯氧基氧原子呈平面几何形状。此外,该配合物还有一个内源性烷氧基桥联的二铜(II)单元,其氧原子呈金字塔形几何形状。1:1的电解质配合物在607 nm处有一个d - d带。使用玻碳工作电极在含有0.1 M TBAP的MeCN中对配合物进行循环伏安法测定,显示在 - 1.0 V(相对于SCE)附近有一个Cu(3)(II)/Cu(2)(II)Cu(I)电对。在300 - 18 K范围内进行的变温磁化率测量表明,配合物中存在反铁磁耦合,对于三铜(II)单元,在300 K时磁矩约为3.0 μ(B),在18 K时约为2.1 μ(B)。使用具有海森堡自旋 - (1)/(2)哈密顿量的模型对实验磁化率数据进行理论拟合,该模型用于具有两个交换参数的自旋 - (1)/(2)铜(II)离子三聚体,这两个交换参数涉及烷氧基桥联的二铜(II)(J1)和双苯氧基桥联的二铜(II)(J2)单元,配合物1的J1和J2值分别为 - 82.7、 - 73 cm(-1),配合物2的J1和J2值分别为 - 98.3、 - 46.1 cm(-1)。结构特征表明,基于与双苯氧基桥联单元相比,烷氧基桥联单元中Cu - O - Cu角的值更大,其反铁磁耦合程度更高。配合物1和2的核心结构与多铜氧化酶氧化形式活性位点结构的第一代模型配合物非常相似。配合物1的晶体结构呈现出层状结构,层间间距约为7 Å,层间空间含有水分子。配合物2由于涉及两个三聚体单元的分子间氢键相互作用而形成六核物种。配合物2的晶体堆积图显示形成了一个三维框架,其中有空腔容纳高氯酸根阴离子。