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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 shape and solvation of the lacunar, saddle-shaped, and planar metal cyclidene complexes: Molecular dynamics studies
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Molecular shape and solvation of the lacunar, saddle-shaped, and planar metal cyclidene complexes: Molecular dynamics studies

机译:腔隙,鞍形和平面金属环化配合物的分子形状和溶剂化:分子动力学研究

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Molecular dynamics simulations have been used to study the three-dimensional distribution of methanol solvent molecules around three cobalt(II) cyclidene complexes differing in details of their ligand structures. The ligands are a planar unbridged 14-membered macrocycle in Co([14]Cyc), a saddle-shaped unbridged 16-membered macrocycle in Co([16]Cyc), and a lacunar bridged 16-membered macrocycle in Co(C6[16]Cyc). All three complexes contain five-coordinate cobalt(II) with the metal ion bound to four nitrogen donor atoms from the macrocycle and one nitrogen donor from an axial methylimidazole. Distinctly different solvation patterns are exemplified for the three complexes by the positions of the maximum in the Co-O pair distribution function (at r(Co-O) = 2.5, 3.7, and 4.5 Angstrom for Co([14]Cyc), Co([16]Cyc), and Co(C6[16]Cyc), respectively) and by the number of methanol molecules within the macrocyclic cleft (1.5, 0.7, and 0.4 molecules at a Co-O distance of 5.25 Angstrom in the "cavity", respectively). Analysis of the anisotropic solvent structure reveals the presence of a methanol molecule directly above the cobalt(II) center, at a distance of ca. 2.5 Angstrom, for planar Co([14]Cyc), and the absence of solvent from such close proximity to the metal ion for the remaining complexes. The bridge further protects the sides of the cavity from the solvent. The width of an empty cavity of Co(C6[16]Cyc) shrinks by 0.3 Angstrom in methanol solution, as compared to vacuum simulations. These results confirm the experimentally based (decrease in absolute value of enthalpies and entropies of dioxygen binding) suggestion that extensive solvation of the cobalt(II) center reduces its accessibility to incoming small molecules. [References: 74]
机译:分子动力学模拟已用于研究甲醇溶剂分子在三个钴(II)环戊烯配合物周围的三维分布,这些配合物的配体结构细节不同。配体是Co([14] Cyc)中的平面非桥14元大环,Co([16] Cyc)中的鞍形未桥16元大环和Co(C6 [ 16] Cyc)。所有这三种配合物均含有五配位的钴(II),金属离子与大环的四个氮供体原子键合,轴向甲基咪唑的一个氮供体键合。对于三种配合物,不同的溶剂化模式以Co-O对分布函数中最大值的位置为例(对于Co([14] Cyc),r(Co-O)= 2.5、3.7和4.5埃时,Co (分别为[[16] Cyc)和Co(C6 [16] Cyc)),并通过“大环裂隙”中甲醇分子的数量(1.5、0.7和0.4分子,位于Co-O距离为5.25埃的“腔”)。对各向异性溶剂结构的分析表明,在钴(II)中心正上方,距离大约为1的位置存在甲醇分子。对于平面Co([14] Cyc)为2.5埃,对于剩余的络合物,由于如此接近金属离子而没有溶剂。桥进一步保护腔体的侧面不受溶剂的影响。与真空模拟相比,Co(C6 [16] Cyc)空腔的宽度在甲醇溶液中缩小了0.3埃。这些结果证实了基于实验的结果(焓绝对值的降低和双氧结合熵的降低),表明钴(II)中心的广泛溶剂化降低了其对进入的小分子的可及性。 [参考:74]

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