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锌(II)的水合能:阈能碰撞诱导解离实验和理论研究。

Hydration energies of zinc(II): threshold collision-induced dissociation experiments and theoretical studies.

机构信息

Department of Chemistry, University of Utah, 315 S. 1400 E. Rm 2020, Salt Lake City, Utah 84112, USA.

出版信息

J Phys Chem A. 2009 Dec 10;113(49):13727-41. doi: 10.1021/jp906235y.

Abstract

The first experimentally determined sequential bond dissociation energies of Zn(2+)(H(2)O)(n) complexes, where n = 6-10, are measured using threshold collision-induced dissociation in a guided ion beam tandem mass spectrometer coupled with an electrospray ionization source. Kinetic energy dependent cross sections are obtained and analyzed to yield 0 K threshold measurements for the loss of one and two water ligands after accounting for multiple collisions, kinetic shifts, and energy distributions. The threshold measurements are then converted from 0 to 298 K values to give the hydration energies for sequentially losing one water from each parent complex. Theoretical geometry optimizations and single-point energy calculations are performed using several levels of theory for comparison to experiment. Although different levels of theory disagree on the ground-state conformation of most complexes examined here leading to potential ambiguities in the final thermochemical values, calculations at the MP2(full) level provide the best agreement with experiment. On this basis, the present experiments are most consistent with the inner solvent shell of Zn(2+) being five waters, except for Zn(2+)(H(2)O)(6) where all waters bind directly to the metal ion. The charge separation process, Zn(2+)(H(2)O)(n) --> ZnOH(+)(H(2)O)(m) + H(+)(H(2)O)(n-m-1), which is in competition with the loss of water from the parent complex, is also observed for n = 6-8. These processes are analyzed in detail in the following paper.

摘要

使用在与电喷雾源耦合的引导离子束串联质谱仪中进行的阈碰撞诱导解离,首次测定了 Zn(2+)(H(2)O)(n)配合物(n = 6-10)的第一个实验确定的顺序键离解能。获得了动能相关的截面,并进行了分析,以在考虑多次碰撞、动力学位移和能量分布后,得出失去一个和两个水分子后的 0 K 阈测量值。然后将这些阈测量值从 0 转换为 298 K 值,以给出从每个母体配合物中依次失去一个水分子的水合能。使用几种理论水平进行了理论几何优化和单点能计算,以与实验进行比较。尽管不同的理论水平对这里考察的大多数配合物的基态构象存在分歧,导致最终热化学值存在潜在的歧义,但在 MP2(full)水平上的计算与实验最吻合。在此基础上,目前的实验与 Zn(2+)的内溶剂壳有五个水分子最为一致,除了 Zn(2+)(H(2)O)(6),其中所有水分子都直接与金属离子结合。电荷分离过程 Zn(2+)(H(2)O)(n) --> ZnOH(+)(H(2)O)(m) + H(+)(H(2)O)(n-m-1) 与母体配合物失去水分子竞争,对于 n = 6-8 也观察到了这一过程。这些过程在以下论文中进行了详细分析。

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