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Energetics of Gaseous Ions

Energetics of Gaseous Ions
Author: Henry M. Rosenstock
Publisher: American Institute of Physics
Total Pages: 802
Release: 1977
Genre: Science
ISBN:

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Studies of the Dissociation and Energetics of Gaseous Ions

Studies of the Dissociation and Energetics of Gaseous Ions
Author: Simon J. King
Publisher:
Total Pages:
Release: 2009
Genre:
ISBN:

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In this thesis the electron ionization of a number of small gas phase molecules is investigated using pulsed time-of-flight mass spectrometry coupled with a 2-D ion coincidence technique. The simultaneous acquisition of conventional TOF mass spectra and ion coincidence mass spectra, enables fragment ions formed by dissociative single, double, and triple ionization, to be distinguished and quantified. Relative partial ionization cross sections (PICS) and precursor specific relative PICS are derived for the formation of positively charged fragment ions, following electron ionization of C_2F_6, SiCl_4, C_2H_2, CO_2 and H_2O, in the ionizing electron energy range 30-200 eV. Such information is of considerable importance for the accurate modelling and understanding of the chemical processes occurring in highly energised media, such as industrial plasmas and planetary atmospheres. The relative PICS quantify the overall yield for each fragment ion, while the precursor specific relative PICS quantify the contributions to the fragment ion yield from single, double and triple ionization, respectively. Relative PICS for the formation of ion pairs via dicationic dissociation are also presented. Comparisons of the relative PICS data to existing measurements of the PICS for these molecules reveals, in many cases, considerable discrepancies for the formation of the low-mass ionic fragments, for which the present cross section measurements are considerably larger. In general, these differences are rationalised by the inefficient collection of energetic ions in the previous determinations of the PICS, in particular for those ionic fragments formed via dissociative multiple ionization, which are efficiently collected in the present investigations. The precursor specific relative PICS data provides a more detailed chemical description of each individual partial ionization cross section, and can be interpreted to explain the various energy-dependent features of the PICS curves observed in previous studies. For example, for the fragment ions formed by electron ionization of SiCl_4, the low energy maxima of the PICS curves are due to contributions from single ionization involving mainly indirect ionization processes, while the higher energy maxima are due to dissociative double ionization. For the electron ionization of small gas phase molecules, the general trend appears to be that the major contributions to the yield of small fragment ions comprising only a few atoms, are from dissociative double ionization, above 100 eV. The shapes of the peaks recorded in the 2-D ion coincidence spectra are interpreted to provide additional information on the fragmentation dynamics and energetics of the charge-separating dissociations of C_{2}F_{6}\: {2+}, SiCl_{4}\: {2+}, C_{2}H_{2}\: {2+}, CO_{2}\: {2+} and H_2O {2+}. Estimates of the dication precursor state energies for forming ion pairs are derived, and are shown to be in good agreement with existing experimental and theoretical data. The measurements presented in this thesis include the first estimates of the electronic state energies of the C_{2}F_{6}\: {2+} and SiCl_{4}\: {2+} dications. A breakdown scheme for C_{2}H_{2}\: {2+} is derived, which in combination with the relative PICS for ion pair formation, yields branching ratios for primary two-body charge separating dissociation. Comparison of this scheme with recent theoretical calculations suggests that below 75 eV, C_{2}H_{2}\: {2+} dissociates predominantly on the ground triplet potential energy surface ({ 3}\sum\,_{g}\, -). By contrast, the dissociations of the C_{2}F_{6}\: {2+} dication are postulated to be predominantly impulsive in nature, for which fastsequential decay mechanisms are proposed for forming ion pairs.


Structures, Energetics and Dynamics of Gaseous Ions

Structures, Energetics and Dynamics of Gaseous Ions
Author:
Publisher:
Total Pages: 34
Release: 1997
Genre:
ISBN:

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The Gordon Research Conference (GRC) on GASEOUS IONS, STRUCTURE, ENERGETIC, & DYNAMICS was held in Ventura, California at DOUBLETREE HOTEL, from 2/23/97 thru 2/28/97. The conference was well attended with 130 participants (attendees list attached). The attendees represented the spectrum of endeavor in this field coming from academia, industry, and government laboratories, both U.S. and foreign scientist, senior researchers, young investigators, and students.


Gas Phase Ion Chemistry

Gas Phase Ion Chemistry
Author: Michael T. Bowers
Publisher: Academic Press
Total Pages: 363
Release: 2013-10-22
Genre: Science
ISBN: 1483216497

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Gas Phase Ion Chemistry, Volume 2 covers the advances in gas phase ion chemistry. The book discusses the stabilities of positive ions from equilibrium gas-phase basicity measurements; the experimental methods used to determine molecular electron affinities, specifically photoelectron spectroscopy, photodetachment spectroscopy, charge transfer, and collisional ionization; and the gas-phase acidity scale. The text also describes the basis of the technique of chemical ionization mass spectrometry; the energetics and mechanisms of unimolecular reactions of positive ions; and the photodissociation of gas-phase ions. The applications of molecular beam techniques to the study of ion-molecule collisions; as well as the variational treatment of charge transfer reactions are also encompassed. Chemists and biochemists will find the book invaluable.


Gaseous Molecular Ions

Gaseous Molecular Ions
Author: Eugen Illenberger
Publisher: Springer Science & Business Media
Total Pages: 357
Release: 2013-03-09
Genre: Science
ISBN: 3662073838

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Most of the matter in our solar system, and, probably, within the whole universe, exists in the form of ionized particles. On the other hand, in our natural environ ment, gaseous matter generally consists of neutral atoms and molecules. Only under certain conditions, such as within the path oflightning or in several technical devices (e. g. gas discharges, rocket engines, etc. ) will some of the atoms and molecules be ionized. It is also believed that the chemistry of the earth's troposphere predomi nantly proceeds via reactions between neutral particles. (The complex system of atmospheric chemistry will be treated in one of the forthcoming volumes to this series. ) Why, then, are ions considered so important that hundreds oflaboratories all over the world (including some of the most prestigious) are involved in research pro grams on ions, covering many different facets, from biochemistry to physics? One may obtain as many different answers as there are research groups busy in this field. There is, however, one simple, common feature which makes it attractive to work with ions: since they carry one or more net elementary charges, they can easily be gui ded, focused or separated by appropriate electric and magnetic fields, and, last but not least, they can easily be detected. Apart from these advantages, which are welcome and appreciated by the researcher, the study of molecular ions can provide insight into very fundamental aspects of the general behavior of molecules.


Electron Impact Phenomena

Electron Impact Phenomena
Author: F. H. Field
Publisher: Academic Press
Total Pages: 577
Release: 2013-10-22
Genre: Science
ISBN: 1483275698

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Electron Impact Phenomena and the Properties of Gaseous Ions, Revised Edition deals with data pertaining to electron impact and to molecular gaseous ionic phenomena. This book discusses electron impact phenomena in gases at low pressure that involve low-energy electrons, which result in ion formation. The text also describes the use of mass spectrometers in electron impact studies and the degree of accuracy obtained when measuring electron impact energies. This book also reviews relatively low speed electrons and the transitions that result in the ionization of the atomic system. This text then discusses diatomic molecules whose mass spectra can be interpreted using the Franck-Condon principle. This selection also presents some examples of ions in solution that resemble the gaseous ions formed by electron impacts. The energies of these gaseous ions can be the key to understanding the mechanisms of ionic reactions. These examples include the olefin addition reactions and catalytic cracking. This text will prove invaluable for research chemists, students, and professors in chemistry and related fields such as organic chemistry and electrochemistry.


Fundamentals of Gas Phase Ion Chemistry

Fundamentals of Gas Phase Ion Chemistry
Author: K.R. Jennings
Publisher: Springer Science & Business Media
Total Pages: 439
Release: 2012-12-06
Genre: Science
ISBN: 9401135185

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This volume presents the proceedings of the 1990 Advanced Study Institute entitled "Fundamentals of Gas Phase Ion Chemistry" held at Mont Ste. Odile , Alsace, France, 25th June -6th July, 1990. The Institute brought together over 100 physicists, physical and organic chemists working on a wide variety of topics with gas-phase ion chemistry as the common theme. Many different viewpoints, making use of very different experimental and theoretical approaches, were brought to bear on the subject and provided a stimulating and up-to-date account of the subject. Although the Institute was built around the invited lectures, many specific points were addressed in workshops which consisted of informal discussion groups which were organised by participants during the Institute. This volume therefore contains not only chapters based on the lectures but summaries of many of the workshops which adds considerably to the diversity of information presented. This Advanced Study Institute was the fifth in a series of NATO-sponsored institutes devoted to various aspects of the physics and chemistry of gas phase ions. These meetings have been held every four years since the first, held in Biarritz in 1974, considered "Interactions between Ions and Molecules". The five volumes which comprise the proceedings of these meetings illustrate very clearly the many advances in theory and experiment which have taken place over the last 20 years.


Inorganic Energetics

Inorganic Energetics
Author: W. E. Dasent
Publisher: CUP Archive
Total Pages: 202
Release: 1982-04-15
Genre: Science
ISBN: 9780521240277

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The 1982 revised second edition of W. E. Dasent's Inorganic Energetics, an established and important teaching text.