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Sr(2+)(H(2)O)(x) 配合物 (x=1-6) 的阈能碰撞诱导解离:Sr(2+) 完全内层壳水合能的实验和理论研究。

Threshold collision-induced dissociation of Sr(2+)(H(2)O)(x) complexes (x=1-6): An experimental and theoretical investigation of the complete inner shell hydration energies of Sr(2+).

机构信息

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

出版信息

J Chem Phys. 2010 Jan 28;132(4):044303. doi: 10.1063/1.3292646.

Abstract

The sequential bond energies of Sr(2+)(H(2)O)(x) complexes, where x=1-6, are determined by threshold collision-induced dissociation using a guided ion beam tandem mass spectrometer equipped with an electrospray ionization source. The electrospray source produces an initial distribution of Sr(2+)(H(2)O)(x) complexes, where x=6-9. Smaller Sr(2+)(H(2)O)(x) complexes, where x=1-5, are accessed using a recently developed in-source fragmentation technique that takes place in the high pressure region of a rf-only hexapole ion guide. This work constitutes the first experimental study for the complete inner shell of any multiply charged ion. The kinetic energy dependent cross sections are determined over a wide energy range to monitor all possible dissociation products and are modeled to obtain 0 and 298 K binding energies for loss of a single water molecule. These binding energies decrease monotonically for the Sr(2+)(H(2)O) complex to Sr(2+)(H(2)O)(6). Our experimental results agree well with previous literature results obtained by equilibrium and kinetic studies for x=5 and 6. Because there has been limited theory for the hydration of Sr(2+), we also present an in-depth theoretical study on the energetics of the Sr(2+)(H(2)O)(x) systems by employing several levels of theory with multiple effective core potentials for Sr and different basis sets for the water molecules.

摘要

采用配备电喷雾电离源的引导离子束串联质谱仪,通过阈碰撞诱导解离法测定了 Sr(2+)(H(2)O)(x) 配合物(x=1-6)的顺序键能。电喷雾源产生了 Sr(2+)(H(2)O)(x)配合物的初始分布,其中 x=6-9。使用最近开发的源内碎裂技术,可以获得较小的 Sr(2+)(H(2)O)(x)配合物,其中 x=1-5,该技术发生在射频六极离子阱的高压区。这项工作构成了任何多电荷离子完整内壳层的首次实验研究。在很宽的能量范围内测定了动能相关的截面,以监测所有可能的解离产物,并对其进行建模以获得单个水分子丢失的 0 和 298 K 结合能。这些结合能对于 Sr(2+)(H(2)O)配合物到 Sr(2+)(H(2)O)(6)单调下降。我们的实验结果与先前通过平衡和动力学研究获得的 x=5 和 6 的文献结果吻合良好。由于 Sr(2+)的水合作用理论有限,我们还通过采用具有多种有效核势的多个理论水平和水分子的不同基组,对 Sr(2+)(H(2)O)(x)系统的能量进行了深入的理论研究。

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