Literature DB >> 22401445

Oxygen cluster anions revisited: solvent-mediated dissociation of the core O4(-) anion.

Dmitry Khuseynov1, Daniel J Goebbert, Andrei Sanov.   

Abstract

The electronic structure and photochemistry of the O(2n)(-)(H(2)O)(m), n = 1-6, m = 0-1 cluster anions is investigated at 532 nm using photoelectron imaging and photofragment mass-spectroscopy. The results indicate that both pure oxygen clusters and their hydrated counterparts with n ≥ 2 form an O(4)(-) core. Fragmentation of these clusters yields predominantly O(2)(-) and O(2)(-)·H(2)O anionic products, with the addition of O(4)(-) fragments for larger parent clusters. The fragment autodetachment patterns observed for O(6)(-) and larger O(2n)(-) species, as well as some of their hydrated counterparts, indicate that the corresponding O(2)(-) fragments are formed in excited vibrational states (v ≥ 4). Yet, surprisingly, the unsolvated O(4)(-) anion itself does not show fragment autodetachment at 532 nm. It is hypothesized that the vibrationally excited O(2)(-) is formed in the intra-cluster photodissociation of the O(4)(-) core anion via a charge-hopping electronic relaxation mechanism mediated by asymmetric solvation of the nascent photofragments: O(4)(-) → O(2)(-)(X(2)Π(g)) + O(2)(a(1)Δ(g)) → O(2)(X(3)Σ(g)(-)) + O(2)(-)(X(2)Π(g)). This process depends on the presence of solvent molecules and leads to vibrationally excited O(2)(-)(X(2)Π(g)) products.
© 2012 American Institute of Physics

Entities:  

Year:  2012        PMID: 22401445     DOI: 10.1063/1.3691104

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  1 in total

1.  Photoelectron Spectroscopy of OH--Anion-Water Clusters Generated by Ultrasonic Nebulizer.

Authors:  Minchae Kang; Chang Jun Park; Hyung Min Kim; Sang Hak Lee
Journal:  Int J Mol Sci       Date:  2022-04-10       Impact factor: 6.208

  1 in total

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