E-Book, Englisch, 276 Seiten, Web PDF
Warren Advances in Magnetic and Optical Resonance
1. Auflage 2013
ISBN: 978-1-4832-8147-6
Verlag: Elsevier Science & Techn.
Format: PDF
Kopierschutz: 1 - PDF Watermark
Volume 15
E-Book, Englisch, 276 Seiten, Web PDF
ISBN: 978-1-4832-8147-6
Verlag: Elsevier Science & Techn.
Format: PDF
Kopierschutz: 1 - PDF Watermark
Advances in Magnetic and Optical Resonance, Volume 15 focuses on the quantitative mathematical treatments of the nuclear magnetic resonance (NMR). This book discusses the iterative methods in the design of pulse sequences for NMR excitation; fixed point theory of iterative schemes; electron-nuclear polarization transfer in the nuclear rotating frame; and LF-and RF-DNP in doped polystyrene. The multipole NMR; solid state and solution NMR of non-classical transition metal polyhydrides; and dihydrogen complexes are also elaborated. This text likewise covers the quantum mechanical exchange in polyhydrides; low-frequency magnetic resonance with a dc SQUID and operating principles of the SQUID detector. This publication is a good source for students and researchers concerned with the application of NMR.
Autoren/Hrsg.
Weitere Infos & Material
1;Front Cover;1
2;Advances in Magnetic and Optical Resonance;4
3;Copyright Page ;5
4;Table of Contents;6
5;Preface;8
6;Chapter 1. Iterative Methods in the Design of Pulse Sequences for NMR Excitation;10
6.1;I. Introduction;10
6.2;II. Coherent Averaging Theory of Iterative Schemes
;13
6.3;III. Fixed Point Theory of Iterative Schemes;23
6.4;IV. Further Applications of the Fixed Point Theory
;46
6.5;V. Conclusion;60
6.6;Acknowledgments;61
6.7;References;61
7;Chapter 2. Electron–Nuclear Polarization Transfer in the Nuclear Rotating Frame;64
7.1;I. Introduction;64
7.2;II. Theory;68
7.3;III. LF-and RF-DNP in Doped Polystyrene;73
7.4;IV. Applications of RF-DNP;77
7.5;V. Summary and Conclusions;85
7.6;Acknowledgments;89
7.7;References;89
8;Chapter 3. Multipole NMR;92
8.1;I. Theory;93
8.2;II. Applications;122
8.3;III. Summary;170
8.4;Acknowledgments;171
8.5;References;171
9;Chapter 4. Solid State and Solution NMR of Nonclassical Transition Metal Polyhydrides;176
9.1;I. Introduction;176
9.2;II. Dihydrogen Complexes;177
9.3;III. Quantum Mechanical Exchange in Polyhydrides;191
9.4;IV. Summary;211
9.5;Acknowledgments;211
9.6;References;211
10;Chapter 5. Low-Frequency Magnetic Resonance with a dc SQUID;214
10.1;I. Introduction;215
10.2;II. Longitudinal Magnetic Resonance;217
10.3;III. Operating Principles of the SQUID Detector;229
10.4;IV. SQUID Spectrometer;240
10.5;V. NQR Results;249
10.6;VI. NMR Results;263
10.7;Acknowledgments;272
10.8;References;272
11;Index;278




