Multifrequency Electron Paramagnetic Resonance

Data and Techniques

Sushil K. Misra (Herausgeber)

Buch | Hardcover
320 Seiten
2014 | 1. Auflage
Wiley-VCH (Verlag)
978-3-527-41222-8 (ISBN)
139,00 inkl. MwSt
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This handbook is aimed to deliver an up-to-date account of some of the recently developed experimental and theoretical methods in EPR, as well as a complete up-to-date listing of the experimentally determined values of multifrequency transition-ion spin Hamiltonian parameters by Sushil Misra, reported in the past 20 years, extending such a listing published by him in the Handbook on Electron Spin Resonance, volume 2. This extensive data tabulation makes up roughly 60% of the book`s content. It is complemented by the first full compilation of hyperfine splittings and g-factors for aminoxyl (nitroxide) radicals since 197 by Larry Berliner, a world expert on spin labeling, helping to identify and interpret substances and processes by means of EPR techniques. The book also includes coverage of the recently developed experimental technique of rapid-scan EPR by Sandra Eaton and Gareth Eaton, and a thorough review of computational modeling in EPR by Stefan Stoll, author of Easy Spin.

Sushil Misra has done extensive experimental and theoretical research in the area of electron spin resonance (ESR) for the last 28 years. Currently, he is a collaborating faculty member at the Advanced Center for Electron Spin Research technology at Cornell University. He has written many review articles and book chapters on the subject and published over 225 papers in refereed journals in the field of ESR. As a specialist frequently invited to international conferences and his involvement with the International EPR Society he not only contributed a significant portion to the Handbook on Electron Spin Resonance, volume 2, but also published another book with Wiley-VCH entitled "Multifrequency Electron Paramagnetic resonance: Theory and Applications", covering a large number of recently developed main topics in ESR. With a background in physics, chemsitry, and bio-chemistry the author team combines a strong expertise in developing EPR instrumentation and applying it to condensed matter, proteins, and even for in-vivo studies.

Chapter I. Introduction
Sushil K. Misra

Chapter II. Rapid Scan Electron Paramagnetic Resonance
Sandra S. Eaton, Richard W. Quine, Mark Tseitlin, Deborah G. Mitchell, George A. Rinard, and Gareth R. Eaton

Introduction
Post-acquisition treatment of rapid-scan signals
Simulation of rapid-scan spectra
Scan coils
Design of scan drivers
Use of ENDOR type coils and RF amplifiers for very fast scans
Resonator design
Background signals
Bridge design
Selection of acquisition parameters
Multifrequency rapid scan
Example of applications
Extension of the rapid-scan technology to scans that are not fast relative to relaxation times
Summary

Chapter III. Computational modeling and least-squares fitting of EPR spectra
Stefan Stoll

Introduction
Software
General principles
Static cw EPR spectra
Dynamic cw EPR spectra
Pulse EPR spectra
Pulse and cw ENDOR spectra
Pulse DEER spectra
Least-squares fitting
Various topics
Outlook

Chapter IV. MULTIFREQUENCY TRANSITION-ION DATA TABULATION
Sushil K. Misra, Sean Moncrieff, and Stefan Diehl

Introduction
Listing of spin-Hamiltonian Parameters
References

Chapter V. COMPILATION OF HYPERFINE SPLITTINGS AND g-FACTORS FOR AMINOXYL (NITROXIDE) RADICALS
Lawrence J. Berliner

Introduction
Tabulations
References

Erscheint lt. Verlag 2.4.2014
Verlagsort Weinheim
Sprache englisch
Maße 170 x 244 mm
Gewicht 835 g
Themenwelt Naturwissenschaften Chemie Analytische Chemie
Naturwissenschaften Chemie Physikalische Chemie
Naturwissenschaften Physik / Astronomie Elektrodynamik
Schlagworte Bildgebendes Verfahren • Bildgebende Verfahren (Medizin) • Chemie • Chemistry • Condensed Matter • Kondensierte Materie • NMR Spectroscopy / MRI / Imaging • NMR-Spektroskopie / MRT / Bildgebende Verfahren • Physics • Physik • spectroscopy • Spektroskopie
ISBN-10 3-527-41222-0 / 3527412220
ISBN-13 978-3-527-41222-8 / 9783527412228
Zustand Neuware
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