Roscioli Joseph R, Hammer Nathan I, Johnson Mark A, Diri Kadir, Jordan Kenneth D
Sterling Chemistry Laboratory, Yale University, New Haven, CT 06520, USA.
J Chem Phys. 2008 Mar 14;128(10):104314. doi: 10.1063/1.2827475.
We report a combined photoelectron and vibrational spectroscopy study of the (H(2)O)(7)(-) cluster anions in order to correlate structural changes with the observed differences in electron binding energies of the various isomers. Photoelectron spectra of the (H(2)O)(7)(-) . Ar(m) clusters are obtained over the range of m=0-10. These spectra reveal the formation of a new isomer (I') for m>5, the electron binding energy of which is about 0.15 eV higher than that of the type I form previously reported to be the highest binding energy species [Coe et al., J. Chem. Phys. 92, 3980 (1990)]. Isomer-selective vibrational predissociation spectra are obtained using both the Ar dependence of the isomer distribution and photochemical depopulation of the more weakly (electron) binding isomers. The likely structures of the isomers at play are identified with the aid of electronic structure calculations, and the electron binding energies, as well as harmonic vibrational spectra, are calculated for 28 low-lying forms for comparison with the experimental results. The HOH bending spectrum of the low binding type II form is dominated by a band that is moderately redshifted relative to the bending origin of the bare water molecule. Calculations trace this feature primarily to the bending vibration localized on a water molecule in which a dangling H atom points toward the electron cloud. Both higher binding forms (I and I') display the characteristic patterns in the bending and OH stretching regions signaling electron attachment primarily to a water molecule in an AA binding site, a persistent motif found in non-isomer-selective spectra of the clusters up to (H(2)O)(50)(-).
我们报告了对(H₂O)₇⁻团簇阴离子进行的光电子与振动光谱联合研究,目的是将结构变化与各种异构体观测到的电子结合能差异关联起来。获得了(H₂O)₇⁻·Arₘ团簇在m = 0 - 10范围内的光电子能谱。这些能谱揭示了m > 5时新异构体(I')的形成,其电子结合能比先前报道的具有最高结合能的I型异构体高约0.15 eV [Coe等人,《化学物理杂志》92, 3980 (1990)]。利用异构体分布的Ar依赖性以及较弱(电子)结合异构体的光化学去布居,获得了异构体选择性振动预解离光谱。借助电子结构计算确定了起作用的异构体的可能结构,并计算了28种低位构型的电子结合能以及谐振光谱,以便与实验结果进行比较。低结合能的II型异构体的HOH弯曲光谱主要由一条相对于裸水分子弯曲原点有适度红移的谱带主导。计算表明,这一特征主要源于一个水分子上的弯曲振动,其中一个悬空的H原子指向电子云。两种较高结合能的构型(I和I')在弯曲和OH伸缩区域均显示出特征模式,表明电子主要附着于AA结合位点的水分子上,这是在(H₂O)₅₀⁻以下团簇的非异构体选择性光谱中发现的一个持久特征。