首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Molecular and Electronic Structures of Homoleptic Six-Coordinate Cobalt(I) Complexes of 2,2 ':6 ',2 ''-Terpyridine, 2,2 '-Bipyridine, and 1,10-Phenanthroline. An Experimental and Computational Study
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Molecular and Electronic Structures of Homoleptic Six-Coordinate Cobalt(I) Complexes of 2,2 ':6 ',2 ''-Terpyridine, 2,2 '-Bipyridine, and 1,10-Phenanthroline. An Experimental and Computational Study

机译:2,2':6',2''-特吡啶,2,2'-联吡啶和1,10-邻菲咯啉的六配位钴(I)配合物的分子和电子结构。实验与计算研究

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摘要

The crystal structures of nine homoleptic, pseudooctahedral cobalt complexes, 1-9, containing either 2,2':6',2 ''-terpyridine (tpy), 4,4'-di-tert-butyl-2,2'-bipyridine ((t)bpy), or 1,10-phenanthroline (phen) ligands have been determined in three oxidation levels, namely, cobalt(III), cobalt(II), and, for the first time, the corresponding presumed cobalt(I) species. The intraligand bond distances in the complexes [Co-I(tpy(0))(2)](+), [Co-I((t)bpy(0))(3)](+), and [Co-I(phen(0))(3)](+) are identical, within experimental error, not only with those in the corresponding trications and dications but also with the uncoordinated neutral ligands tpy(0), bpy(0), and phen(0). On this basis, a cobalt(I) oxidation state assignment can be inferred for the monocationic complexes. The trications are clearly low-spin Co-III (S = 0) species, and the dicationic species [Co-II(tpy(0))(2)](2+), [Co-II((t)bpy(0))(3)](2+), and [Co-II(phen(0))(3)](2+) contain high-spin (S = 3/2) Co-II. Notably, the cobalt(I) complexes do not display any structural indication of significant metal-to-ligand (t(2g) -> pi*) pi-back-donation effects. Consistent with this proposal, the temperature-dependent molar magnetic susceptibilities of the three cobalt(I) species have been recorded (3-300 K) and a common S = 1 ground state confirmed. In contrast to the corresponding electronic spectra of isoelectronic (and isostructural) [Ni-II(tpy(0))(2)](2+), [Ni-II(bpy(0))(3)](2+), and [Ni-II(phen(0))(3)](2+), which display d -> d bands with very small molar extinction coefficients (epsilon < 60 M-1 cm(-1)), the spectra of the cobalt(I) species exhibit intense bands (epsilon > 10(3) M-1 cm(-1)) in the visible and near-IR regions. Density functional theory (DFT) calculations using the B3LYP functional have validated the experimentally derived electronic structure assignments of the monocations as cobalt(I) complexes with minimal cobalt-to-ligand pi-back-bonding. Similar calculations for the six-coordinate neutral complexes [Co-II(tpy(center dot))(2)] and [Co-II(bpy(center dot))(2)(bpy(0))](0) point to a common S = 3/2 ground state, each possessing a central high-spin Co-II ion and two pi-radical anion ligands. In addition, the excited-states and ground state magnetic properties of [Co-I(tpy(0))(2)][CoI-(CO)(4)] have been explored by variable-temperature variable-magnetic-field magnetic circular dichroism (MCD) spectroscopy. A series of strong signals associated with the paramagnetic monocation exhibit pronounced C-term behavior indicative of the presence of metal-to-ligand charge-transfer bands [in contrast to d-d transitions of the nickel(II) analogue]. Time-dependent DFT calculations have allowed assignment of these transitions as Co(3d) -> pi*(tpy) excitations. Metal-to-ligand charge-transfer states intermixing with the Co(d(8)) multiplets explain the remarkably large (and negative) zero-field-splitting parameter D obtained from SQUID and MCD measurements.
机译:九个均一的伪八面体钴络合物1-9的晶体结构,其中包含2,2':6',2''-吡啶(tpy),4,4'-二叔丁基-2,2'-联吡啶((t)bpy)或1,10-菲咯啉(phen)配体已经确定了三种氧化水平,分别是钴(III),钴(II)和相应的假定的钴(一)物种。配合物[Co-I(tpy(0))(2)](+),[Co-I((t)bpy(0))(3)](+)和[Co- I(phen(0))(3)](+)在实验误差范围内是相同的,不仅与相应的刻度和指示中的相同,而且与不配位的中性配体tpy(0),bpy(0)和phen (0)。在此基础上,可以推断出单阳离子络合物的钴(I)氧化态分配。等级明显是低自旋的Co-III(S = 0)物种,而指示词是[Co-II(tpy(0))(2)](2 +),[Co-II((t)bpy( 0))(3)](2+)和[Co-II(phen(0))(3)](2+)包含高自旋(S = 3/2)Co-II。值得注意的是,钴(I)配合物没有显示出任何显着的金属-配体(t(2g)-> pi *)pi-back-doning效果的结构指示。与该建议一致,已记录了三种钴(I)物种的温度依赖性摩尔磁化率(3-300 K),并确认了常见的S = 1基态。与等电子(和等结构)[Ni-II(tpy(0))(2)](2+)的相应电子光谱相反,[Ni-II(bpy(0))(3)](2+)和[Ni-II(phen(0))(3)](2+),它们显示的d-> d谱带的消光系数非常小(ε<60 M-1 cm(-1)),光谱钴(I)物种在可见光和近红外区域显示出很强的条带(ε> 10(3)M-1 cm(-1))。使用B3LYP官能团的密度泛函理论(DFT)计算已验证了以单价钴-配体pi-back-bonding最少的,作为钴(I)配合物的单阳离子的实验衍生电子结构分配。六坐标中性配合物[Co-II(tpy(中心点))(2)]和[Co-II(bpy(中心点))(2)(bpy(0))](0)点的相似计算到一个常见的S = 3/2基态,每个基态都有一个中心高自旋Co-II离子和两个π自由基阴离子配体。另外,通过变温变磁场磁场对[Co-I(tpy(0))(2)] [CoI-(CO)(4)]的激发态和基态磁性进行了研究。圆二色性(MCD)光谱。与顺磁性单阳离子相关的一系列强信号表现出明显的C项行为,表明存在金属到配体的电荷转移带[与镍(II)类似物的d-d跃迁相反]。与时间有关的DFT计算已允许将这些跃迁分配为Co(3d)-> pi *(tpy)激励。金属到配体的电荷转移态与Co(d(8))多重峰混合在一起,解释了从SQUID和MCD测量获得的非常大的(负)零场分裂参数D。

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