Zum Hauptinhalt springen Zur Suche springen Zur Hauptnavigation springen
Beschreibung
There is a growing need in both industrial and academic research to obtain accurate quantitative results from continuous wave (CW) electron paramagnetic resonance (EPR) experiments. This book describes various sample-related, instrument-related and software-related aspects of obtaining quantitative results from EPR expe- ments. Some speci?c items to be discussed include: selection of a reference standard, resonator considerations (Q, B ,B ), power saturation, sample position- 1 m ing, and ?nally, the blending of all the factors together to provide a calculation model for obtaining an accurate spin concentration of a sample. This book might, at ?rst glance, appear to be a step back from some of the more advanced pulsed methods discussed in recent EPR texts, but actually quantitative ¿routine CW EPR¿ is a challenging technique, and requires a thorough understa- ing of the spectrometer and the spin system. Quantitation of CW EPR can be subdivided into two main categories: (1) intensity and (2) magnetic ?eld/mic- wave frequency measurement. Intensity is important for spin counting. Both re- tive intensity quantitation of EPR samples and their absolute spin concentration of samples are often of interest. This information is important for kinetics, mechanism elucidation, and commercial applications where EPR serves as a detection system for free radicals produced in an industrial process. It is also important for the study of magnetic properties. Magnetic ?eld/microwave frequency is important for g and nuclear hyper?ne coupling measurements that re?ect the electronic structure of the radicals or metal ions.
There is a growing need in both industrial and academic research to obtain accurate quantitative results from continuous wave (CW) electron paramagnetic resonance (EPR) experiments. This book describes various sample-related, instrument-related and software-related aspects of obtaining quantitative results from EPR expe- ments. Some speci?c items to be discussed include: selection of a reference standard, resonator considerations (Q, B ,B ), power saturation, sample position- 1 m ing, and ?nally, the blending of all the factors together to provide a calculation model for obtaining an accurate spin concentration of a sample. This book might, at ?rst glance, appear to be a step back from some of the more advanced pulsed methods discussed in recent EPR texts, but actually quantitative ¿routine CW EPR¿ is a challenging technique, and requires a thorough understa- ing of the spectrometer and the spin system. Quantitation of CW EPR can be subdivided into two main categories: (1) intensity and (2) magnetic ?eld/mic- wave frequency measurement. Intensity is important for spin counting. Both re- tive intensity quantitation of EPR samples and their absolute spin concentration of samples are often of interest. This information is important for kinetics, mechanism elucidation, and commercial applications where EPR serves as a detection system for free radicals produced in an industrial process. It is also important for the study of magnetic properties. Magnetic ?eld/microwave frequency is important for g and nuclear hyper?ne coupling measurements that re?ect the electronic structure of the radicals or metal ions.
Zusammenfassung

Practical guide for people who perform EPR measurements, or supervise the use of EPR spectroscopy

No existing book provides this level of practical guidance to ensure successful use of EPR

Careful attention to the guidance given in this book will ensure qunatitatively accurate EPR spectra

Numerous pictures of the effect of instrument parameters on EPR spectra are included

Includes supplementary material: [...]

Inhaltsverzeichnis
Basics of Continuous Wave EPR.- Why Should Measurements Be Quantitative?.- Important Principles for Quantitative EPR.- A More in Depth Look at the EPR Signal Response.- Practical Advice About Crucial Parameters.- A Deeper Look at B1 and Modulation Field Distribution in a Resonator.- Resonator Q.- Filling Factor.- Temperature.- Magnetic Field and Microwave Frequency.- Standard Samples.
Details
Erscheinungsjahr: 2014
Fachbereich: Atomphysik & Kernphysik
Genre: Mathematik, Medizin, Naturwissenschaften, Physik, Technik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: xii
185 S.
ISBN-13: 9783709116814
ISBN-10: 3709116813
Sprache: Englisch
Einband: Kartoniert / Broschiert
Autor: Eaton, Gareth R.
Weber, Ralph T.
Barr, David P.
Eaton, Sandra S.
Hersteller: Springer Vienna
Springer-Verlag GmbH
Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, D-69121 Heidelberg, juergen.hartmann@springer.com
Maße: 235 x 155 x 12 mm
Von/Mit: Gareth R. Eaton (u. a.)
Erscheinungsdatum: 23.11.2014
Gewicht: 0,312 kg
Artikel-ID: 104913720