Ambundo Edna A, Yu Qiuyue, Ochrymowycz L A, Rorabacher D B
Departments of Chemistry, Wayne State University, Detroit, Michigan 48202, USA.
Inorg Chem. 2003 Aug 25;42(17):5267-73. doi: 10.1021/ic030176c.
The electron-transfer kinetics for each of three copper(II/I) tripodal ligand complexes reacting with multiple reducing and oxidizing counter reagents have been examined in aqueous solution at 25 degrees C, mu = 0.10 M. For all of the ligands studied, an amine nitrogen serves as the bridgehead atom. Two of the ligands (PMMEA and PEMEA) contain two thioether sulfurs and one pyridyl nitrogen as donor atoms on the appended legs while the third ligand (BPEMEA) has two pyridyl nitrogens and one thioether sulfur. Very limited kinetic studies were also conducted on two additional closely related tripodal ligand complexes. The results are compared to our previous kinetic study on a Cu(II/I) system involving a tripodal ligand (TMMEA) with thioether sulfur donor atoms on all three legs. In all systems, the Cu(II/I) electron self-exchange rate constants (k(11)) are surprisingly small, ranging approximately 0.03-50 M(-)(1) s(-)(1). The results are consistent with earlier studies reported by Yandell involving the reduction of Cu(II) complexes with four similar tripodal ligand systems, and it is concluded that the dominant reaction pathway involves a metastable Cu(II)L intermediate species (designated as pathway B). Since crystal structures suggest that the ligand reorganization accompanying electron transfer is relatively small compared to our earlier studies on macrocyclic ligand complexes of Cu(II/I), it is unclear why the k(11) values for the tripodal ligand systems are of such small magnitude.
在25℃、μ = 0.10 M的水溶液中,研究了三种铜(II/I)三脚架配体配合物与多种还原和氧化抗衡试剂反应的电子转移动力学。对于所有研究的配体,胺氮作为桥头原子。其中两种配体(PMMEA和PEMEA)在连接的支链上含有两个硫醚硫原子和一个吡啶氮原子作为供体原子,而第三种配体(BPEMEA)有两个吡啶氮原子和一个硫醚硫原子。还对另外两种密切相关的三脚架配体配合物进行了非常有限的动力学研究。将结果与我们之前对涉及一种三脚架配体(TMMEA)的铜(II/I)体系的动力学研究进行了比较,该体系的所有三条支链上都有硫醚硫供体原子。在所有体系中,铜(II/I)电子自交换速率常数(k(11))出奇地小,范围约为0.03 - 50 M⁻¹ s⁻¹。结果与Yandell早期报道的涉及用四种类似三脚架配体体系还原铜(II)配合物的研究一致,得出的结论是主要反应途径涉及一种亚稳的铜(II)L中间体物种(指定为途径B)。由于晶体结构表明,与我们之前对铜(II/I)大环配体配合物的研究相比,伴随电子转移的配体重组相对较小,目前尚不清楚为什么三脚架配体体系的k(11)值如此之小。