Moderne methodische Entwicklungen in der Elektronenspinresonanz-Spektroskopie

Electron spin resonance ( ESR) is extensively used in various fields of research as a powerful toolfor the determination of molecular structures ofparamagnetic compounds. In particular solid state physics, organic and inorganic chemistry, materials science, biology, and environmental science apply...

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Main Author: Arthur Schweiger
Format: Article
Language:deu
Published: Swiss Chemical Society 1986-04-01
Series:CHIMIA
Online Access:https://www.chimia.ch/chimia/article/view/9725
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author Arthur Schweiger
author_facet Arthur Schweiger
author_sort Arthur Schweiger
collection DOAJ
description Electron spin resonance ( ESR) is extensively used in various fields of research as a powerful toolfor the determination of molecular structures ofparamagnetic compounds. In particular solid state physics, organic and inorganic chemistry, materials science, biology, and environmental science apply this sensitive and non-destructive spectroscopic technique with great success. However, ESR often suffers from a poor spectral resolution which may severely limit its applicability. The demand for improved resolution in electron spin resonance stimulated the development of various novel experimental techniques. In this review article, we present two modern methods, namely electron nuclear double resonance (ENDOR) and electron spin echo (ESE) spectroscopy. The high resolution inherent in these techniques provides the scientist with a detailed picture of the chemical bonding in paramagnetic species. The basic principles and the state-of-the-art of ENDOR and ESE methodology in solids will be outlined. The scope and the limitations of these advanced magnetic resonance techniques, particularly in coordination chemistry, will be discussed and illustrated by' different examples.
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publishDate 1986-04-01
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spelling doaj-art-1b6389f346764904b6a3801a8d3d54d02025-08-20T02:20:26ZdeuSwiss Chemical SocietyCHIMIA0009-42932673-24241986-04-0140410.2533/chimia.1986.111Moderne methodische Entwicklungen in der Elektronenspinresonanz-SpektroskopieArthur Schweiger0Laboratorium für Physikalische Chemie Eidgenössische Technische Hochschule Zürich ETH-Zentrum, Universitätstrasse 22 CH-8092 Zürich Electron spin resonance ( ESR) is extensively used in various fields of research as a powerful toolfor the determination of molecular structures ofparamagnetic compounds. In particular solid state physics, organic and inorganic chemistry, materials science, biology, and environmental science apply this sensitive and non-destructive spectroscopic technique with great success. However, ESR often suffers from a poor spectral resolution which may severely limit its applicability. The demand for improved resolution in electron spin resonance stimulated the development of various novel experimental techniques. In this review article, we present two modern methods, namely electron nuclear double resonance (ENDOR) and electron spin echo (ESE) spectroscopy. The high resolution inherent in these techniques provides the scientist with a detailed picture of the chemical bonding in paramagnetic species. The basic principles and the state-of-the-art of ENDOR and ESE methodology in solids will be outlined. The scope and the limitations of these advanced magnetic resonance techniques, particularly in coordination chemistry, will be discussed and illustrated by' different examples. https://www.chimia.ch/chimia/article/view/9725
spellingShingle Arthur Schweiger
Moderne methodische Entwicklungen in der Elektronenspinresonanz-Spektroskopie
CHIMIA
title Moderne methodische Entwicklungen in der Elektronenspinresonanz-Spektroskopie
title_full Moderne methodische Entwicklungen in der Elektronenspinresonanz-Spektroskopie
title_fullStr Moderne methodische Entwicklungen in der Elektronenspinresonanz-Spektroskopie
title_full_unstemmed Moderne methodische Entwicklungen in der Elektronenspinresonanz-Spektroskopie
title_short Moderne methodische Entwicklungen in der Elektronenspinresonanz-Spektroskopie
title_sort moderne methodische entwicklungen in der elektronenspinresonanz spektroskopie
url https://www.chimia.ch/chimia/article/view/9725
work_keys_str_mv AT arthurschweiger modernemethodischeentwicklungeninderelektronenspinresonanzspektroskopie