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首页> 外文期刊>Computational & theoretical chemistry >Multiligand zinc(II) hydroxide complexes: Zn(OH) _2X _2Y and Zn(OH) _2X _(1,2)Y _2; X=H _2O, CH _3OH and Y=NH _3, C _5H _5N
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Multiligand zinc(II) hydroxide complexes: Zn(OH) _2X _2Y and Zn(OH) _2X _(1,2)Y _2; X=H _2O, CH _3OH and Y=NH _3, C _5H _5N

机译:多配体氢氧化锌(II)配合物:Zn(OH)_2X _2Y和Zn(OH)_2X _(1,2)Y _2; X = H _2O,CH _3OH和Y = NH _3,C _5H _5N

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As one component of our computational study of zinc-seamed pyrogallol[4]arene nanocapsules, we are investigating small mononuclear and polynuclear zinc complexes. In this article the results of our quantum chemical calculations on Zn(OH) _2X _2Y and Zn(OH) _2X _(1,2)Y _2 complexes, where X is water or methanol and Y is pyridine or ammonia, are described. Structures and energetics obtained with the LanL2DZ vs. 6-311+G(d,p) vs. B2(pp) basis sets and DFT vs. MP2 methods are compared and contrasted. The effect of the hydroxide ligands on the preferred zinc coordination number and mode, inner- and outer-shell ligands, and hydrogen-bonding motifs is also examined. Trends in ligand binding energies are discussed. Of particular note is that the B3LYP/LanL2DZ calculations overemphasize the strength of both the conventional and unconventional hydrogen bonds.
机译:作为我们对锌接缝的邻苯三酚[4]芳烃纳米胶囊进行计算研究的一个组成部分,我们正在研究小的单核和多核锌配合物。在本文中,我们描述了我们在Zn(OH)_2X _2Y和Zn(OH)_2X _(1,2)Y _2配合物上进行的量子化学计算的结果,其中X是水或甲醇,Y是吡啶或氨。比较和对比了使用LanL2DZ vs.6-311 + G(d,p)vs.B2(pp)基集以及DFT vs.MP2方法获得的结构和能量学。还检查了氢氧化物配体对优选的锌配位数和模式,内壳和外壳配体以及氢键基序的影响。讨论了配体结合能的趋势。特别需要注意的是,B3LYP / LanL2DZ的计算过分强调了常规氢键和非常规氢键的强度。

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