Akin F Ahu, Schirra Laura K, Sanov Andrei
Department of Chemistry, University of Arizona, Tucson, AZ 85721-0041, USA.
J Phys Chem A. 2006 Jul 6;110(26):8031-6. doi: 10.1021/jp062135i.
The photodetachment of the O(2)(-).H(2)O cluster anion at 780 and 390 nm is investigated in comparison with O(2)(-) using photoelectron imaging spectroscopy. Despite the pronounced shift in the photoelectron spectra, the monohydration has little effect on the photoelectron angular distributions: for a given wavelength and electron kinetic energy (eKE) range, the O(2)(-).H(2)O angular distributions are quantitatively similar to those for bare O(2)(-). This observation confirms that the excess electron in O(2)(-).H(2)O retains the overall character of the 2ppi(g) HOMO of O(2)(-). The presence of H(2)O does not affect significantly the partial wave composition of the photodetached electrons at a given eKE. An exception is observed for slow electrons, where O(2)(-).H(2)O exhibits a faster rise in the photodetachment signal with increasing eKE, as compared to O(2)(-). The possible causes of this anomaly are (i) the long-range charge-dipole interaction between the departing electron and the neutral O(2).H(2)O skeleton affecting the slow-electron dynamics; and (ii) the s wave contributions to the photodetachment, which are dipole-forbidden for pi(g)(-1) transitions in O(2)(-), but formally allowed in O(2)(-).H(2)O due to lower symmetry of the cluster anion and the corresponding HOMO.
利用光电子成像光谱,对O₂⁻·H₂O团簇阴离子在780和390 nm处的光剥离进行了研究,并与O₂⁻进行了比较。尽管光电子能谱有明显的位移,但单水合作用对光电子角分布影响很小:对于给定的波长和电子动能(eKE)范围,O₂⁻·H₂O的角分布在定量上与裸O₂⁻的角分布相似。这一观察结果证实,O₂⁻·H₂O中的多余电子保留了O₂⁻的2πg HOMO的整体特征。在给定的eKE下,H₂O的存在对光剥离电子的分波组成没有显著影响。对于慢电子,观察到一个例外情况,与O₂⁻相比,O₂⁻·H₂O随着eKE增加,光剥离信号上升得更快。这种异常现象的可能原因是:(i)离去电子与中性O₂·H₂O骨架之间的长程电荷 - 偶极相互作用影响了慢电子动力学;(ii)光剥离中的s波贡献,对于O₂⁻中的πg⁻¹跃迁,s波贡献是偶极禁戒的,但由于团簇阴离子的对称性较低以及相应的HOMO,在O₂⁻·H₂O中s波贡献形式上是允许的。