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首页> 外文期刊>The Journal of Chemical Physics >The vibrational predissociation spectra of the H5O2+center dot RG(n)(RG=Ar,Ne) clusters: Correlation of the solvent perturbations in the free OH and shared proton transitions of the Zundel ion - art. no. 244301
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The vibrational predissociation spectra of the H5O2+center dot RG(n)(RG=Ar,Ne) clusters: Correlation of the solvent perturbations in the free OH and shared proton transitions of the Zundel ion - art. no. 244301

机译:H5O2 +中心点RG(n)(RG = Ar,Ne)团簇的振动预离解谱:游离OH中的溶剂扰动与Zundel离子的共享质子跃迁的相关性-艺术。没有。 244301

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Predissociation spectra of the H(5)O(2)(+.)RG(n)(RG=Ar,Ne) cluster ions are reported in energy regions corresponding to both the OH stretching (3350-3850 cm(-1)) and shared proton (850-1950 cm(-1)) vibrations. The two free OH stretching bands displayed by the Ne complex are quite close to the band origins identified earlier in bare H5O2+ [L. I. Yeh, M. Okumura, J. D. Myers, J. M. Price, and Y. T. Lee, J. Chem. Phys. 91, 7319 (1989)], indicating that the symmetrical H5O2+ "Zundel" ion remains largely intact in H5O2+.Ne. The low-energy spectrum of the Ne complex is simpler than that observed previously for H5O2+.Ar, and is dominated by two sharp transitions at 928 and 1047 cm(-1), with a weaker feature at 1763 cm(-1). The H5O2+.Arn,n=1-5 spectra generally exhibit complex band structures reflecting solvent-induced symmetry breaking of the Zundel core ion. The extent of solvent perturbation is evaluated with electronic structure calculations, which predict that the rare gas atoms should attach to the spectator OH groups of H5O2+ rather than to the shared proton. In the asymmetric complexes, the shared proton resides closer to the more heavily solvated water molecule, leading to redshifts in the rare gas atom-solvated OH stretches and to blueshifts in the shared proton vibrations. The experimental spectra are compared with recent full-dimensional vibrational calculations (diffusion Monte Carlo and multimode/vibrational configuration interaction) on H5O2+. These results are consistent with assignment of the strong low-energy bands in the H5O2+.Ne spectrum to the vibration of the shared proton mostly along the O-O axis, with the 1763 cm(-1) band traced primarily to the out-of-phase, intramolecular bending vibrations of the two water molecules. (c) 2005 American Institute of Physics.
机译:报告了H(5)O(2)(+。)RG(n)(RG = Ar,Ne)团簇离子的预解离光谱在对应于两个OH拉伸(3350-3850 cm(-1))的能量区域中并共享质子(850-1950 cm(-1))振动。 Ne络合物显示的两个自由OH拉伸带与早期在裸露的H5O2 +中[L. I. Yeh,M。Okumura,J.D。Myers,J.M。Price和Y.T. Lee,J.Chem。物理91、7319(1989)],表明对称的H5O2 +“ Zundel”离子在H5O2 + .Ne中基本上保持完整。 Ne络合物的低能谱比以前观察到的H5O2 + .Ar的谱更简单,并且以928和1047 cm(-1)处的两个尖锐跃迁为主,而在1763 cm(-1)处具有较弱的特征。 H5O2 + .Arn,n = 1-5光谱通常显示出复杂的能带结构,反映了溶剂诱导的Zundel核心离子对称性断裂。溶剂扰动的程度通过电子结构计算进行评估,该结构预测稀有气体原子应附着在H5O2 +的旁观者OH基团上,而不是在共享质子上。在不对称络合物中,共享的质子靠近更重溶剂化的水分子,从而导致稀有气体原子溶剂化的OH链段发生红移,并导致共享的质子振动发生蓝移。将实验光谱与最近在H5O2 +上进行的全尺寸振动计算(扩散蒙特卡罗和多模/振动构型相互作用)进行了比较。这些结果与H5O2 + .Ne光谱中强的低能带分配给共享质子的振动主要沿OO轴一致,其中1763 cm(-1)的能带主要追溯到异相,两个水分子的分子内弯曲振动。 (c)2005年美国物理研究所。

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