Proceedings of the 71st International Symposium on Molecular Spectroscopy 2016
DOI: 10.15278/isms.2016.tg05
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Photoelectron Imaging of OXIDE.VOC Clusters

Abstract: Perturbations of the bare O2-and O4-electronic structure arising from VOC (VOC = hexane, isoprene, benzene and benzene.D6) interactions are investigated using anion photoelectron imaging at 2.33 and 3.49 eV photon energies. Trends observed from comparing features in the spectra include VOC-identity-dependent electron affinities of the VOC complexes relative to the bare oxide clusters, due to enhance stability in the anion complex relative to the neutral. Autodetachment is observed in all O4-.VOC spectra and on… Show more

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“…In contrast to our previously reported spectra on complexes formed between O 2 − and nonpolar VOC's, 16 band a in the O 2 −…”
Section: Introductioncontrasting
confidence: 99%
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“…In contrast to our previously reported spectra on complexes formed between O 2 − and nonpolar VOC's, 16 band a in the O 2 −…”
Section: Introductioncontrasting
confidence: 99%
“…30,31 Oxygenated VOCs such as 2-propenol (allyl alcohol), 3-buten-1-ol, and 3-buten-2-ol are largely anthropogenic 32,33 and lead to secondary aerosol formation. 34 A significant difference between the O 2 − •[polar VOC] complexes in the current study and the O 2 − •[nonpolar VOC] complexes studied previously 16 arises from the strong charge− dipole interactions and hydrogen bonding that favor a distinct structural orientation between the O 2 − anion and the neutral VOC. In the case of nonpolar partners, the intermolecular potential energy surface was inferred to be flat, on the basis of the numerous close-lying structural minima separated by low barriers found computationally.…”
Section: Introductionmentioning
confidence: 66%
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