首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Metal-ion selectivity produced by c-alkyl substituents on the bridges of chelating ligands: The importance of short H-H nonbonded van der waals contacts in controlling metal-ion selectivity. A thermodynamic, molecular mechanics, and crystallographic
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Metal-ion selectivity produced by c-alkyl substituents on the bridges of chelating ligands: The importance of short H-H nonbonded van der waals contacts in controlling metal-ion selectivity. A thermodynamic, molecular mechanics, and crystallographic

机译:螯合配体桥上的c-烷基取代基产生的金属离子选择性:短的H-H非键范德华接触在控制金属离子选择性中的重要性。热力学,分子力学和晶体学

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The effect on metal-ion selectivity of the use of cyclohexenyl bridges in ligands in place of ethylene bridges is examined (selectivity is defined as the difference in log K-1 for one metal ion relative to that of another with the same ligand). The syntheses of N,N'-bis(2-hydroxycyclohexyl)ethane-1,2-diamine (Cy-2-en), N,N'-bis(2-hydroxycyclohexyl)propane-1,3-diamine (Cy-2-tn), and 1,7-bis(2-hydroxycyclohexyl)-1,4,7-triazaheptane (Cy-2-dien) are reported. The crystal structures of [Cu(Cy-2-tn)(H2O)](ClO4)(2) (1) and [Cu(Cy-2-dien)](ClO4)(2) (2) are reported. Characteristics of 1: monoclinic, Pn space group, a = 11.627(2) angstrom, b = 7.8950(10) angstrom, c = 12.737(8) angstrom, beta = 98.15(3)degrees, Z = 2, R = 0.0524. Characteristics of 2: orthorhombic, Pbca space group, a = 21.815(16) angstrom, b = 8.525(7) angstrom, c = 25.404(14) angstrom, Z = 8, R = 0.0821. Structure 1 has the Cu(II) atom coordinated in the plane of the ligand to the two N donors and two O donors, with a long bond to an axially coordinated water molecule. 2 has three N donors, and one hydroxyl O donor from the ligand is coordinated in the plane around the Cu(II) atom, with the second hydroxyl O donor of the ligand occupying an axial site with a long Cu-O bond. The salient feature of both structures is the short H-H nonbonded distance between H atoms on the cyclohexenyl bridges and H atoms on the ethylene bridges of the ligand. These short contacts are important in explaining the metal-ion selectivities of these ligands. Formation constants, determined by glass-electrode potentiometry, for the Cy-2-en (Cu(II), Ni(II), Zn(II), Cd(II), Pb(II)), Cy-2-dien (Cu(II), Zn(II), Cd(II), Pb(II)), and Cy-2-tn (Cu(II), Zn(II), Cd(II)) complexes are reported. These all show a strong shift in selectivity toward smaller metal ions compared with the analogous ligands, where ethylene bridges are present in place of the cyclohexenyl bridges of the ligands studied here. Molecular mechanics (MM) calculations are used to analyze these changes in selectivity. These calculations show that the short H-H contacts become shorter with increasing metal-ion size, which is suggested as the cause of the shift in the selectivity of ligands in favor of smaller metal ions when ethylene bridges are replaced with cyclohexenyl bridges. MM calculations are also used to rationalize, in terms of short H-H contacts, the fact that when the chelate ring contains two neutral O donors, more stable complexes result with cis placement of the donor atoms on the cyclohexenyl bridge, but with two N donors, trans placement of the donor atoms results in more stable complexes.
机译:研究了在配体中使用环己烯基桥代替乙烯桥对金属离子选择性的影响(选择性定义为,一个金属离子的log K-1与具有相同配体的另一种金属离子的log K-1的差异)​​。 N,N'-双(2-羟基环己基)乙烷-1,2-二胺(Cy-2-en),N,N'-双(2-羟基环己基)丙烷-1,3-二胺(Cy-据报道有2-tn)和1,7-双(2-羟基环己基)-1,4,7-三氮杂庚烷(Cy-2-dien)。报告了[Cu(Cy-2-tn)(H2O)](ClO4)(2)(1)和[Cu(Cy-2-dien)](ClO4)(2)(2)的晶体结构。 1:单斜晶系的特征,Pn空间群,a = 11.627(2)埃,b = 7.8950(10)埃,c = 12.737(8)埃,beta = 98.15(3)度,Z = 2,R = 0.0524。 2:2的特性:正交,Pbca空间群,a = 21.815(16)埃,b = 8.525(7)埃,c = 25.404(14)埃,Z = 8,R = 0.0821。结构1具有在配体平面上与两个N供体和两个O供体配位的Cu(II)原子,其与轴向配位的水分子具有长键。 2具有三个N供体,一个来自配体的羟基O供体在围绕Cu(II)原子的平面内进行配位,该配体的第二个羟基O供体占据具有长Cu-O键的轴向位点。两种结构的显着特征是在环己烯基桥上的H原子与配体的乙烯桥上的H原子之间的短H-H非键距离。这些短接触对于解释这些配体的金属离子选择性很重要。通过玻璃电极电位法确定的Cy-2-en(Cu(II),Ni(II),Zn(II),Cd(II),Pb(II)),Cy-2-dien(报道了Cu(II),Zn(II),Cd(II),Pb(II))和Cy-2-tn(Cu(II),Zn(II),Cd(II))络合物。与类似的配体相比,所有这些都显示出选择性朝着较小的金属离子的强烈变化,在类似的配体中,使用乙烯桥代替此处研究的配体的环己烯基桥。分子力学(MM)计算用于分析选择性的这些变化。这些计算表明,短的H-H接触随着金属离子尺寸的增加而变短,这被认为是当乙烯桥被环己烯基桥取代时,配体选择性向较小金属离子转移的原因。 MM计算也可用于就短HH接触而言合理化的事实,即当螯合环包含两个中性O供体时,更稳定的配合物会导致供体原子顺式放置在环己烯基桥上,但带有两个N供体,供体原子的转位产生更稳定的络合物。

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