Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
Inorg Chem. 2010 Apr 5;49(7):3104-12. doi: 10.1021/ic901733h.
A powerful means of enhancing our understanding of the structures and functions of enzymes that contain nickel-sulfur bonds, such as Ni superoxide dismutase, acetyl-coenzyme A synthase/carbon monoxide dehydrogenase, [NiFe] hydrogenase, and methyl-CoM reductase, involves the investigation of model compounds with similar structural and/or electronic properties. In this study, we have characterized a trans-mu-1,2-disulfido-bridged dinickel(II) species, {(tmc)Ni}(2)(S(2)) (1, tmc = 1,4,8,11-tetramethyl-1,4,8,11-tetraazacyclotetradecane) by using electronic absorption, magnetic circular dichroism (MCD), and resonance Raman (rR) spectroscopic techniques, as well as density functional theory (DFT) and time-dependent DFT computational methods. Our computational results, validated on the basis of the experimental MCD data and previously reported (1)H NMR spectra, reveal that 1 is best described as containing two antiferromagnetically coupled high-spin Ni(II) centers. A normal coordinate analysis of the rR vibrational data was performed to quantify the core bond strengths, yielding force constants of k(Ni-S) = 2.69 mdyn/A and k(S-S) = 2.40 mdyn/A. These values provide a useful basis for a comparison of metal-S/O bonding in 1 and related Ni(2)(O(2)), Cu(2)(O(2)), and Cu(2)(S(2)) dimers. In both the disulfido and the peroxo species, the lower effective nuclear charge of Ni(II) as compared to Cu(II) results in a decreased covalency, and thus relatively weaker metal-S/O bonding interactions in the Ni(2) dimers than in the Cu(2) complexes.
一种增强我们对含镍 - 硫键的酶的结构和功能理解的有力手段,例如 Ni 超氧化物歧化酶、乙酰辅酶 A 合酶/一氧化碳脱氢酶、[NiFe]氢化酶和甲基-CoM 还原酶,涉及对具有类似结构和/或电子性质的模型化合物的研究。在这项研究中,我们通过使用电子吸收、磁圆二色性 (MCD) 和共振拉曼 (rR) 光谱技术以及密度泛函理论 (DFT) 和时间相关 DFT 计算方法,对顺式-μ-1,2-二硫代桥联二镍 (II) 物种 {(tmc)Ni}(2)(S(2)) (1, tmc = 1,4,8,11-四甲基-1,4,8,11-四氮杂环十四烷)进行了表征。我们的计算结果基于实验 MCD 数据和先前报道的 (1)H NMR 谱进行了验证,表明 1 最好被描述为含有两个反铁磁耦合的高自旋 Ni(II)中心。对 rR 振动数据进行了正则坐标分析,以量化核心键强度,得到 k(Ni-S) = 2.69 mdyn/A 和 k(S-S) = 2.40 mdyn/A 的力常数。这些值为比较 1 中和相关 Ni(2)(O(2))、Cu(2)(O(2))和 Cu(2)(S(2))二聚体中的金属-S/O 键合提供了有用的基础。在二硫代和过氧物种中,与 Cu(II)相比,Ni(II)的有效核电荷较低,导致共价性降低,因此 Ni(2)二聚体中的金属-S/O 键合相互作用比 Cu(2)配合物中的相对较弱。