Desrochers Patrick J, Telser Joshua, Zvyagin S A, Ozarowski Andrew, Krzystek J, Vicic David A
Department of Chemistry, University of Central Arkansas, Conway, Arkansas 72035, USA.
Inorg Chem. 2006 Oct 30;45(22):8930-41. doi: 10.1021/ic060843c.
A series of complexes of formula TpNiX, where Tp*- = hydrotris(3,5-dimethylpyrazole)borate and X = Cl, Br, I, has been characterized by electronic absorption spectroscopy in the visible and near-infrared (NIR) region and by high-frequency and -field electron paramagnetic resonance (HFEPR) spectroscopy. The crystal structure of TpNiCl has been previously reported; that for TpNiBr is given here: space group = Pmc2(1), a = 13.209(2) A, b = 8.082(2) A, c = 17.639(4) A, alpha = beta = gamma = 90 degrees , Z = 4. TpNiX contains a four-coordinate nickel(II) ion (3d8) with approximate C3v point group symmetry about the metal and a resulting S = 1 high-spin ground state. As a consequence of sizable zero-field splitting (zfs), TpNiX complexes are "EPR silent" with use of conventional EPR; however, HFEPR allows observation of multiple transitions. Analysis of the resonance field versus the frequency dependence of these transitions allows extraction of the full set of spin Hamiltonian parameters. The axial zfs parameter for TpNiX displays pronounced halogen contributions down the series: D = +3.93(2), -11.43(3), -22.81(1) cm(-1), for X = Cl, Br, I, respectively. The magnitude and change in sign of D observed for TpNiX reflects the increasing bromine and iodine spin-orbit contributions facilitated by strong covalent interactions with nickel(II). These spin Hamiltonian parameters are combined with estimates of 3d energy levels based on the visible-NIR spectra to yield ligand-field parameters for these complexes following the angular overlap model (AOM). This description of electronic structure and bonding in a pseudotetrahedral nickel(II) complex can enhance the understanding of similar sites in metalloproteins, both native nickel enzymes and nickel-substituted zinc enzymes.
一系列通式为TpNiX的配合物(其中Tp*⁻ = 氢三(3,5 - 二甲基吡唑)硼酸根,X = Cl、Br、I)已通过可见和近红外(NIR)区域的电子吸收光谱以及高频和高场电子顺磁共振(HFEPR)光谱进行了表征。TpNiCl的晶体结构先前已有报道;此处给出TpNiBr的晶体结构:空间群 = Pmc2(1),a = 13.209(2) Å,b = 8.082(2) Å,c = 17.639(4) Å,α = β = γ = 90°,Z = 4。TpNiX包含一个四配位镍(II)离子(3d⁸),围绕金属具有近似C₃ᵥ点群对称性,从而产生S = 1的高自旋基态。由于存在可观的零场分裂(zfs),使用传统EPR时TpNiX配合物是“EPR沉默”的;然而,HFEPR允许观察到多个跃迁。对这些跃迁的共振场与频率依赖性进行分析,可以提取出完整的自旋哈密顿参数集。TpNiX的轴向zfs参数在整个系列中显示出明显的卤素贡献:对于X = Cl、Br、I,D分别为 +3.93(2)、 -11.43(3)、 -22.81(1) cm⁻¹。在TpNiX中观察到的D的大小和符号变化反映了与镍(II)的强共价相互作用促进的溴和碘自旋 - 轨道贡献的增加。这些自旋哈密顿参数与基于可见 - NIR光谱的3d能级估计值相结合,按照角重叠模型(AOM)得出这些配合物的配体场参数。这种对伪四面体镍(II)配合物中电子结构和键合的描述可以增进对金属蛋白中类似位点的理解,包括天然镍酶和镍取代的锌酶。