Electron Nuclear Double Resonance of Transition Metal Complexes with Organic Ligands

Electron Nuclear Double Resonance of Transition Metal Complexes with Organic Ligands PDF Author: A. Schweiger
Publisher: Springer
ISBN: 9783540110729
Category : Science
Languages : en
Pages : 130

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Electron Nuclear Double Resonance of Transition Metal Complexes with Organic Ligands

Electron Nuclear Double Resonance of Transition Metal Complexes with Organic Ligands PDF Author: Arthur Schweiger
Publisher: Springer Verlag
ISBN: 9780387110721
Category : Science
Languages : en
Pages : 128

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Structure and Bonding, Volume 51: Electron Nuclear Double Resonance of Transition Metal Complexes with Organic Ligands

Structure and Bonding, Volume 51: Electron Nuclear Double Resonance of Transition Metal Complexes with Organic Ligands PDF Author: Schweiger A.
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Electron Nuclear Resonance of Transition Metal Complexes with Organic Ligands

Electron Nuclear Resonance of Transition Metal Complexes with Organic Ligands PDF Author: A. Schweiger
Publisher:
ISBN:
Category :
Languages : en
Pages : 128

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Electron Nuclear Double Resonance Spectroscopy of Radicals in Solution

Electron Nuclear Double Resonance Spectroscopy of Radicals in Solution PDF Author: Harry Kurreck
Publisher:
ISBN:
Category : Biochemistry
Languages : en
Pages : 396

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Transition Metal Complexes — Structures and Spectra

Transition Metal Complexes — Structures and Spectra PDF Author:
Publisher: Springer
ISBN: 354038751X
Category : Science
Languages : en
Pages : 211

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Basic Organometallic Chemistry

Basic Organometallic Chemistry PDF Author: Ionel Haiduc
Publisher: Walter de Gruyter
ISBN: 3110847884
Category : Science
Languages : en
Pages : 517

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Electron Paramagnetic Resonance Investigations of Biological Systems by Using Spin Labels, Spin Probes, and Intrinsic Metal Ions Part A

Electron Paramagnetic Resonance Investigations of Biological Systems by Using Spin Labels, Spin Probes, and Intrinsic Metal Ions Part A PDF Author:
Publisher: Academic Press
ISBN: 0128028467
Category : Science
Languages : en
Pages : 722

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Book Description
Electron Paramagnetic Resonance Investigations of Biological Systems by Using Spin Labels, Spin Probes, and Intrinsic Metal Ions Part A & B, are the latest volumes in the Methods in Enzymology series, continuing the legacy of this premier serial with quality chapters authored by leaders in the field. This volume covers research methods centered on the use of Electron Paramagnetic Resonance (EPR) techniques to study biological structure and function. - Timely contribution that describes a rapidly changing field - Leading researchers in the field - Broad coverage: Instrumentation, basic theory, data analysis, and applications

Multifrequency Electron Paramagnetic Resonance

Multifrequency Electron Paramagnetic Resonance PDF Author: Sushil K. Misra
Publisher: John Wiley & Sons
ISBN: 3527672451
Category : Science
Languages : en
Pages : 398

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Book Description
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.

High Resolution EPR

High Resolution EPR PDF Author: Graeme Hanson
Publisher: Springer Science & Business Media
ISBN: 0387848568
Category : Medical
Languages : en
Pages : 666

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Book Description
Metalloproteins comprise approximately 30% of all known proteins, and are involved in a variety of biologically important processes, including oxygen transport, biosynthesis, electron transfer, biodegradation, drug metabolism, proteolysis, and hydrolysis of amides and esters, environmental sulfur and nitrogen cycles, and disease mechanisms. EPR spectroscopy has an important role in not only the geometric structural characterization of the redox cofactors in metalloproteins but also their electronic structure, as this is crucial for their reactivity. The advent of x-ray crystallographic snapshots of the active site redox cofactors in metalloenzymes in conjunction with high-resolution EPR spectroscopy has provided detailed structural insights into their catalytic mechanisms. This volume was conceived in 2005 at the Rocky Mountain Conference on Analytical Chemistry (EPR Symposium) to highlight the importance of high-resolution EPR spectroscopy to the structural (geometric and electronic) characterization of redox active cofactors in metalloproteins. We have been fortunate to have enlisted internationally recognized experts in this joint venture to provide the scientific community with an overview of high-resolution EPR and its application to metals in biology. This volume, High-Resolution EPR: Applications to Metalloenzymes and Metals in Medicine, covers high-resolution EPR methods, iron proteins, nickel and copper enzymes, and metals in medicine. An eloquent synopsis of each chapter is provided by John Pilbrow in the Introduction. A second volume, Metals in Biology: Applications of High-Resolution EPR to Metalloenzymes, will appear later this year covering the complement of other metalloproteins. One of the pioneers in the development of pulsed EPR and its application to metalloproteins was Arthur Schweiger, whose contribution we include in this volume. Unfortunately, he passed away suddenly during the preparation of this volume. The editors and coauthors are extremely honored to dedicate this volume to the memory of Arthur Schweiger in recognition of his technical advances and insights into pulsed EPR and its application to metalloproteins. Arthur was extremely humble and treated everyone with equal respect. He was a gifted educator with an ability to explain complex phenomena in terms of simple intuitive pictures, had a delightful personality, and continues to be sadly missed by the community. It is an honor for the editors to facilitate the dissemination of these excellent contributions to the scientific community. Suggestions for future volumes are always appreciated.