

Beschreibung
The field of Very High Frequency EPR (VHF EPR) or sometimes called Very High Field EPR (conveniently, also abbreviated as VHF EPR) has blossomed during the past decade, especially after the original pioneering work of Ya. S. Lebedev and his group at the Instit...The field of Very High Frequency EPR (VHF EPR) or sometimes called Very High Field EPR (conveniently, also abbreviated as VHF EPR) has blossomed during the past decade, especially after the original pioneering work of Ya. S. Lebedev and his group at the Institute of Chemical Physics, Russian Academy of Sciences in Moscow. Although Lebedev suffered heavily under the economic constraints of the communist Soviet Union and then succumbed to cancer at the peak of his scientific career, his groundbreaking work from the 1970's is still considered today to be the 'gold standard' by researchers practicing EPR at high magnetic fields. A stimulus for the production of this book is the legacy of Yakov Levedev in his students now residing in academic positions in the US and elsewhere. The aim of this book is to highlight the state of this growing field. This is an attempt to cover the full scope of VHF EPR in a single volume. The idea for this volume came to the editors at the 2001 Rocky Mountain Analytical Conference during the 24th International EPR Symposium chaired by Sandra and Gareth Eaton. VHF EPR was presented as an independent research field at a workshop organized by LC BruneI and supported by the National High Magnetic Field Laboratory, a National Science Foundation funded facility at Florida State University.
Autorentext
Dr. Lawrence J. Berliner is currently Professor and Chair of the Department of Chemistry and Biochemistry at the University of Denver after retiring from Ohio State University, where he spent a 32-year career in the area of biological magnetic resonance (EPR and NMR). He is the Series Editor for Biological Magnetic Resonance , which he launched in 1979.
Klappentext
Very High Frequency (VHF) ESR/EPR focuses on a new area of electron spin resonance spectroscopy that has blossomed during the past decade. This textbook both highlights the state-of-the-art of this field while covering the full scope of VHF EPR in a single volume. The topics were chosen to cover areas in which VHF EPR seems to be especially productive, as well as critical new technical developments. The contributors of the book are leaders in their fields. They emphasize the need for VHF EPR, describe results that could only be achieved with VHF EPR, and discuss the further potential of this evolving field. This volume provides information that will be useful for many years, focusing on what advantages and benefits one may expect from VHF EPR. Key Features: -History of Very High Frequency EPR, -Principles of High-Field EPR, Instrumentation and Resonators for Quasioptical EPR, -Applications to Photosynthesis, Protein Structure, Molecular Dynamics, Metal Sites in Proteins, Transition Metal Centers, Small Inorganic Models and Spin Labels in Membranes, -Pulse High Frequency EPR, Time-Resolved High Frequency and Multifrequency EPR, -High Frequency ESEEM and ENDOR.
Inhalt
The Early Years.- The Development of High-Field /High Frequency ESR.- Primary Processes in Photosynthesis: What do we learn from High-Field EPR Spectroscopy?.- High Field ESR: Applications to Protein Structure and Dynamics.- The use of Very High Frequency EPR (VHF-EPR) in Studies of Radicals and Metal Sites in Proteins and Small Inorganic Models.- Time-Resolved High-Frequency and Multifrequency EPR Studies of Spin-Correlated Radical Pairs in Photosynthetic Reaction Center Proteins.- Molecular Dynamics of Gd(III) Complexes in Aqueous Solution by HF EPR.- Pulsed High-Frequency EPR.- High-Frequency EPR, ESEEM and ENDOR Studies of Paramagnetic Canters in Single-Crystalline Materials.- W-band Pulsed ENDOR of Transition Metal Centers in Orientationally Disordered Systems and Single Crystals.- Sample Resonators for Quasioptical EPR.- The Bruker ELEXSYS E600/680 W-Band Spectrometer Series.- HF EPR Spectra of Spin Labels in Membranes.- Modern Developments and Prospects in Multi Frequency High Field EMR.
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