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Infrared photodissociation spectroscopy of [Aniline-(Water)n]+ (n = 1-8): Structural change from branched and cyclic to proton-transferred forms

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TLDR
In this article, the infrared photodissociation spectra of [aniline−(H2O)n]- (n = 1−8) are measured in the 2700−3800 cm-1 region.
Abstract
Infrared photodissociation spectra of [aniline−(H2O)n]+ (n = 1−8) are measured in the 2700−3800 cm-1 region. The spectra are interpreted with the aid of density functional theory calculations. The n = 1 ion has an N−H···O hydrogen bond. The spectrum of the n = 2 ion demonstrates a large perturbation to both of the NH oscillators, indicating the 1−1 structure where each NH bond is bound to a water molecule. For the n = 3 ion, the calculated spectrum of the 2−1 branched structure coincides well with the observed one. For the n = 4 ion, there exist three strong bands at 2960, 3100, and 3430 cm-1, as well as a very weak one at 3550 cm-1. The observed spectrum in the 3600−3800 cm-1 region is decomposed into four bands centered at 3640, 3698, 3710, and 3734 cm-1. The 2−2 branched isomer is responsible for all the features except the 3550 and 3710 cm-1 bands. These two bands are due to another isomer with a five-membered ring. An infrared band characteristic of the n = 5 ion appears at 3684 cm-1, which is not se...

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Journal ArticleDOI

Vibrational predissociation of aniline-Inert gas cluster cations

TL;DR: In this paper, the molecular structures and predissociation dynamics of aniline (Phenylamine, PhNH2)-inert gas cluster cations were investigated by infrared (IR) spectroscopy coupled with density functional theory (DFT) calculations and IR photofragmentation studies.
Reference EntryDOI

Hydrogen Bonds of Anilines

TL;DR: In this article, a self-association of anilines and hydrogen bonds in polyanilines is discussed. But hydrogen bonds are not considered in the context of this article.
Journal ArticleDOI

Controlling mass loss from RTM6 epoxy resin under simulated vacuum infusion conditions

TL;DR: In this paper , a certified aerospace resin resin (RTM 6) was used for vacuum infusion in a part and a thermogravimetric analysis was performed to investigate the expected occurrence of volatile loses during infusion.
Reference EntryDOI

General and Theoretical Aspects of Anilines

TL;DR: In this paper, the authors discuss the energy properties of some fundamental processes, including molecular structure and bonding and collision-induced dissociation (CID) spectrum, in terms of energy consumption.
Journal ArticleDOI

Charge resonance structure of aniline dimer cation

TL;DR: In this paper, the molecular structure of aniline dimer cation, (PhNH 2 ) 2 +, was investigated by photodissociation spectroscopy coupled with tandem time of flight mass spectrometry.
References
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Journal ArticleDOI

Vibrational spectroscopy of the hydrated hydronium cluster ions H3O+·(H2O)n (n=1, 2, 3)

TL;DR: In this paper, a two color laser scheme consisting of a tunable cw infrared laser with 0.5 cm^−1 resolution used to excite the O−H stretching vibrations and a cw CO2 laser that dissociates the vibrationally excited cluster ion through a multiphoton process is presented.
Journal ArticleDOI

Infrared Spectra of H+(H2O)5-8 Clusters: Evidence for Symmetric Proton Hydration

TL;DR: In this article, a vibrational predissociation spectroscopy and ab initio calculations of protonated water clusters from a supersonic expansion were performed at the B3LYP/6-31+G* level.
Journal ArticleDOI

Structures and Isomeric Transitions of NH4+(H2O)3-6: From Single to Double Rings

TL;DR: In this paper, a vibrational predissociation spectroscopy (VPS) was used to identify cyclic and noncyclic isomers in the supersonic jet.
Journal ArticleDOI

Characterization of the Hydrogen-Bonded Cluster Ions [Phenol−(H2O)n]+ (n = 1−4), (Phenol)2+, and (Phenol−Methanol)+ As Studied by Trapped Ion Infrared Multiphoton Dissociation Spectroscopy of Their OH Stretching Vibrations

TL;DR: In this article, the HO stretching vibrations of hydrogen-bonded cluster ions of phenol (PhOH), [PhOH−(H2O)n]- (n = 1−4), (PhO−methanol)+ and [PhO+−H3O+n−1]- were observed with infrared photodissociation spectroscopy in combination with an ion-trapping technique.
Journal ArticleDOI

Infrared spectroscopy of resonantly ionized (phenol)(h2o)n

TL;DR: In this article, the infrared spectra of (phenol)(H2O)n+ cluster ions (n = 1−4, 7, 8) have been recorded in the region from 2850 to 3800 cm-1.
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