Khriachtchev | Physics and Chemistry at Low Temperatures | Buch | 978-981-4267-51-9 | sack.de

Buch, Englisch, 532 Seiten, Format (B × H): 164 mm x 241 mm, Gewicht: 883 g

Khriachtchev

Physics and Chemistry at Low Temperatures


1. Auflage 2011
ISBN: 978-981-4267-51-9
Verlag: Pan Stanford Publishing Pte Ltd

Buch, Englisch, 532 Seiten, Format (B × H): 164 mm x 241 mm, Gewicht: 883 g

ISBN: 978-981-4267-51-9
Verlag: Pan Stanford Publishing Pte Ltd


Tunneling reactions in chemistry are characterized by the low-temperature limit when the classical contribution is negligible. Many practical applications benefit from the lack of heat and have a deep physical basis. Interesting advantages of chemical synthesis at low temperatures have also been demonstrated. This book covers fundamental and practical aspects of the processes and experimental and theoretical methods used in the field. The chapters are written by leading scientists who have very strong experience in the selected topics, and many practical recommendations can be found in this book.

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Zielgruppe


Academic and Postgraduate


Autoren/Hrsg.


Weitere Infos & Material


Photoexcitation of Free Radicals and Molecular Ions Trapped in Rare-Gas Solids. Metal Atom Reactions to Form Novel Small Molecules. Conformational Changes in Cryogenic Matrices. Photodynamics at Low Temperatures, in Time Domain. Matrix Isolation of H and D atoms: Physics and Chemistry from 1.5 to 0.05 K. Matrix Isolation Spectroscopy in Solid Parahydrogen: A Primer. Matrix Isolation Spectroscopy in Helium Droplets. Cryogenic Solutions as a Tool to Characterize Red- and Blue-Shifting C-H.X Hydrogen Bonding. Low-Temperature Infrared Spectroscopy of Surface Species. Photolysis and Radiolysis of Water Ice. Cool Interstellar Physics and Chemistry. High-Resolution Single-Molecule Spectroscopy in Condensed Matter. Noble-Gas Chemistry. Modeling Structures and Spectra of Trapped Species in Low-Temperature Matrices. Spectroscopy of Biological Molecules at Very Low Temperatures: Theoretical Studies.


Leonid Khriachtchev graduated from Leningrad State University, Russia, in 1981. He completed his PhD study in Quantum Electronics in 1986 and became a senior scientist and a group leader in 1988 at the Institute of Physics of the same university. That time, his research mainly dealt with resonant light pressure and optical pumping of the ground state of atoms in the gas phase and laser technique. In 1994, he joined the University of Helsinki, Finland, and he is currently with the Laboratory of Physical Chemistry of this university. His scientific interests include experimental optical and laser spectroscopy of matrix-isolated species and nanoscale materials. He has contributed to the construction of new chemical bonds, including the first argon chemical compound, HArF, and light-induced conformational changes at low temperatures. Optical and structural studies of silicon nanocrystals have been another important part of this research activity. He is the editor of the book Silicon Nanophotonics: Basic Principles, Present Status, and Perspectives, (World Scientific Publishing, 2008). He is the author of about 180 refereed articles.



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