Site- and geometry-specific CH…O interaction in small acetaldehyde clusters studied with core-electron excitation spectroscopy in the carbonK-edge region
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
http://stacks.iop.org/1742-6596/288/i=1/a=012022/pdf
Reference34 articles.
1. Inner-shell excitation spectroscopy and fragmentation of small hydrogen-bonded clusters of formic acid after core excitations at the oxygen K edge
2. INNER-SHELL EXCITATION AND FRAGMENTATION OF NITROMETHANE CLUSTERS AT THE OXYGEN K-EDGE
3. Hydrogen bonding in methanol clusters probed by inner-shell photoabsorption spectroscopy in the carbon and oxygen K-edge regions
4. Hydrogen bonding in acetone clusters probed by near-edge x-ray absorption fine structure spectroscopy in the carbon and oxygen K-edge regions
5. Inner-shell excitation and fragmentation of small acetaldehyde clusters at the oxygen K-edge
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1. On the potential energy surfaces of dimers formed between trans-glyoxal, trans-acrolein and formaldehyde;Computational and Theoretical Chemistry;2015-06
2. Substituent R-Effects on Intermolecular Resonance-Assisted Hydrogen (H) Bonds: Theoretical Analysis of Double H-Bonded Dimers of Carboxylic Acids;Bulletin of the Chemical Society of Japan;2014-04-15
3. Acetaldehyde adsorption and condensation on anatase TiO2: Influence of acetaldehyde dimerization;Journal of Molecular Catalysis A: Chemical;2014-01
4. Substituent R-effects on the core–electron excitation spectra of hydrogen-bonded carboxylic-acid (R–COOH) clusters: Comparison between acetic-acid and formic-acid clusters;Chemical Physics Letters;2013-02
5. Core-to-Rydberg band shift and broadening of hydrogen bonded ammonia clusters studied with nitrogen K-edge excitation spectroscopy;The Journal of Chemical Physics;2012-01-07
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