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Microscopic Structure and Dynamics of Liquids

Microscopic Structure and Dynamics of Liquids
Author: J. Dupuy
Publisher: Springer Science & Business Media
Total Pages: 520
Release: 2012-12-06
Genre: Science
ISBN: 1468408593

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What did we have in mind when in May, 1976, we (Professor de Gennes, Dr. Tourand and ourselves) thought of a Summer School in the field of liquids? First, we wanted to present and discuss the new results that have been obtained recently, in particular at the high flux reactor of the Institut Laue-Langevin in Grenoble since it became operational in 1972. In order to achieve this goal, the major part of this Summer School was devoted to an ex tensive presentation of the gen~ra1 concepts and methods of study ing this state of matter (time-dependent correlation functions, molecular dynamics, intermolecular forces, spectroscopic tech niques ••• ) and concentrated on a few specific systems which have seen significant development in the last few years, both theoret ically and experimentally. These systems are the different classes of simple liquids: metallic liquids, ionic liquids, simple molecu lar liquids and the new field of superionic conductors (solid electrolytes). Furthermore, we wanted to put some emphasis on a particular research area in the field of liquids, namely critical phenomena in fluids. This was chosen both because of our personal interest in this field and the major theoretical advances which have occurred in the last ten years. We also wished that some new powerful techniques or new theo retical approaches be presented at this School. Thus, picosecond laser techniques, theoretical calculations on dipolar fluids, and angular correlations in molecular liquids were the subject of specific seminars.


Optical Kerr Effect Studies of Hydrogen Bonding and Phase Behavior in Aqueous Binary Mixtures

Optical Kerr Effect Studies of Hydrogen Bonding and Phase Behavior in Aqueous Binary Mixtures
Author: Heather Elyse Bailey
Publisher:
Total Pages:
Release: 2018
Genre:
ISBN:

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The behavior of molecules in condensed phases involves complex considerations to fully describe the microscopic structure and dynamics. This is particularly interesting in complex liquids with inherent heterogeneity and in binary mixtures where the competition between the interactions between similar and dissimilar species greatly affects the microstructures of the liquid. The ubiquity of aqueous binary mixtures necessitates their study, particularly because the unique properties of water often manifests anomalously in the physical properties of binary mixtures. These changes in physical properties are the result of structural changes at the molecular level. In this thesis, the dynamical results from optical heterodyne-detected optical Kerr effect (OHD-OKE) experiments are reported for a series of aqueous binary mixtures. OHD-OKE is a nonresonant pump probe technique in which the bulk orientational dynamics of a liquid are measured via the time-dependent birefringence induced in the sample by an optical pulse. The OHD-OKE setup used in this thesis has the ability to measure dynamics over seven decades of time and eight decades of signal, which is an incredible window for a single experimental technique. Ultrafast pulses, which are necessary to have sufficient resolution, are generated by a Ti:Sapphire oscillator/regenerative amplifier. Multiple techniques including heterodyne detection and phase cycling are used to improve signal to noise, particularly at long time when signals are small. The theory behind OHD-OKE and a description of the experimental setup are given here. In addition to dynamical information, microstructural changes can be extracted from OHD-OKE data using the Debye Stokes Einstein (DSE) equation. The specific structures can be elucidated using complementary techniques. The remainder of the thesis is devoted to the aqueous binary mixtures of interest and the results from OHD-OKE and complementary techniques. First, a protic ionic liquid is compared to its aprotic analogue in order to better understand the role of hydrogen bonding in ionic liquids at various hydration levels. This work is further expanded to ionic liquids of varying chain lengths and anions in order to provide a deeper understanding of hydrophilicity and water saturation in ionic liquids. Finally, the anomalous phase behavior of the nicotine/water binary system is studied in order to elucidate the dynamics and microstructures associated with the lower critical solution temperature.


Novel Approaches to the Structure and Dynamics of Liquids: Experiments, Theories and Simulations

Novel Approaches to the Structure and Dynamics of Liquids: Experiments, Theories and Simulations
Author: Jannis Samios
Publisher: Springer Science & Business Media
Total Pages: 548
Release: 2013-11-11
Genre: Science
ISBN: 1402023847

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The unique behavior of the "liquid state", together with the richness of phenomena that are observed, render liquids particularly interesting for the scientific community. Note that the most important reactions in chemical and biological systems take place in solutions and liquid-like environments. Additionally, liquids are utilized for numerous industrial applications. It is for these reasons that the understanding of their properties at the molecular level is of foremost interest in many fields of science and engineering. What can be said with certainty is that both the experimental and theoretical studies of the liquid state have a long and rich history, so that one might suppose this to be essentially a solved problem. It should be emphasized, however, that although, for more than a century, the overall scientific effort has led to a considerable progress, our understanding of the properties of the liquid systems is still incomplete and there is still more to be explored. Basic reason for this is the "many body" character of the particle interactions in liquids and the lack of long-range order, which introduce in liquid state theory and existing simulation techniques a number of conceptual and technical problems that require specific approaches. Also, many of the elementary processes that take place in liquids, including molecular translational, rotational and vibrational motions (Trans. -Rot. -Vib. coupling), structural relaxation, energy dissipation and especially chemical changes in reactive systems occur at different and/or extremely short timescales.


Annual Commencement

Annual Commencement
Author: Stanford University
Publisher:
Total Pages: 424
Release: 1987
Genre:
ISBN:

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Annual Reports in Computational Chemistry

Annual Reports in Computational Chemistry
Author: David A. Dixon
Publisher: Elsevier
Total Pages: 136
Release: 2018-10-04
Genre: Science
ISBN: 0444641459

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Annual Reports in Computational Chemistry, Volume 14, provides timely and critical reviews of important topics in computational chemistry. Topics covered in this series include quantum chemistry, molecular mechanics, force fields, chemical education, and applications in academic and industrial settings. Focusing on the most recent literature and advances in the field, each article covers a specific topic of importance to computational chemists. Includes timely discussions on quantum chemistry and molecular mechanics Covers force fields, chemical education, and more Presents the latest in chemical education and applications in both academic and industrial settings


Physics Briefs

Physics Briefs
Author:
Publisher:
Total Pages: 1420
Release: 1993
Genre: Physics
ISBN:

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