High-resolution NMR techniques in organic chemistry /

From the initial observation of proton magnetic resonance in water and in paraffin, the discipline of nuclear magnetic resonance has seen unparalleled growth as an analytical method. Modern NMR spectroscopy is a highly developed, yet still evolving, subject which finds application in chemistry, biol...

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Bibliographic Details
Main Author: Claridge, Timothy D. W
Format: Book
Language:English
Published: Amsterdam ; New York : Pergamon, 1999
Amsterdam ; New York : c1999
Amsterdam ; New York : 1999
Edition:1st ed
Series:Tetrahedron organic chemistry series ; v. 19
Tetrahedron organic chemistry series v. 19
Tetrahedron organic chemistry series ; v. 19
Tetrahedron organic chemistry series v. 19
Subjects:
NMR
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245 1 0 |a High-resolution NMR techniques in organic chemistry /  |c Timothy D.W. Claridge 
246 3 |a High-resolution nuclear magnetic resonance techniques in organic chemistry 
250 |a 1st ed 
250 |a First edition 
260 |a Amsterdam ;  |a New York :  |b Pergamon,  |c 1999 
260 |a Amsterdam ;  |a New York :  |b Pergamon,  |c c1999 
264 1 |a Amsterdam ;  |a New York :  |b Pergamon,  |c 1999 
300 |a xiv, 382 p. :  |b ill. ;  |c 31 cm 
300 |a xiv, 382 p. :  |b ill. ;  |c 32 cm 
300 |a xiv, 382 pages :  |b illustrations ;  |c 31 cm 
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337 |a unmediated  |b n  |2 rdamedia 
338 |a volume  |b nc  |2 rdacarrier 
440 0 |a Tetrahedron organic chemistry series ;  |v v. 19 
440 0 |a Tetrahedron organic chemistry series  |v v. 19 
490 1 |a Tetrahedron organic chemistry series ;  |v v. 19 
500 |a This WorldCat-derived record is shareable under Open Data Commons ODC-BY, with attribution to OCLC  |5 CTY 
504 |a Includes bibliographical references and index 
505 0 |a Introducing high-resolution NMR -- Practical aspects of high-resolution NMR -- One-dimensional techniques -- Correlations through the chemical bond 1, Homonuclear shift correlation -- Correlations through the chemical bond 2, Heteronuclear shift correlation -- Separating shifts and couplings : J-resolved spectroscopy -- Correlations through space : the nuclear Overhauser effect -- Experimental methods 
505 0 0 |a note:  |g Ch. 1  |t Introduction --  |g Ch. 2  |t Introducing high-resolution NMR --  |g Ch. 3  |t Practical aspects of high-resolution NMR --  |g Ch. 4  |t One-dimensional techniques --  |g Ch. 5  |t Correlations through the chemical bond I: Homonuclear shift correlation --  |g Ch. 6  |t Correlations through the chemical bond II: Heteronuclear shift correlation --  |g Ch. 7  |t Separating shifts and couplings: J-resolved spectroscopy --  |g Ch. 8  |t Correlations through space: The nuclear Overhauser effect --  |g Ch. 9  |t Experimental methods 
505 0 0 |g Ch. 1  |t Introduction --  |g Ch. 2.  |t Introducing high-resolution NMR --  |g Ch. 3.  |t Practical aspects of high-resolution NMR --  |g Ch. 4.  |t One-dimensional techniques --  |g Ch. 5.  |t Correlations through the chemical bond I: Homonuclear shift correlation --  |g Ch. 6.  |t Correlations through the chemical bond II: Heteronuclear shift correlation --  |g Ch. 7.  |t Separating shifts and couplings: J-resolved spectroscopy --  |g Ch. 8.  |t Correlations through space: The nuclear Overhauser effect --  |g Ch. 9.  |t Experimental methods. 
505 0 0 |t The development of high-resolution NMR --  |t Modern NMR and this book --  |t Applying modern NMR techniques --  |t Introducing High-resolution NMR --  |t Nuclear spin and resonance --  |t The vector model and pulse excitation --  |t Time and frequency domains --  |t Spin relaxation --  |t Mechanisms for relaxation --  |t Practical Aspects of High-resolution NMR --  |t An overview of the NMR spectrometer --  |t Data acquisition and processing --  |t Preparing the sample --  |t Preparing the spectrometer --  |t Spectrometer calibrations --  |t Spectrometer performance tests --  |t One-dimensional Techniques --  |t The single-pulse experiment --  |t Spin decoupling methods --  |t Spectrum editing with spin-echoes --  |t Sensitivity enhancement and spectrum editing --  |t Observing quadrupolar nuclei --  |t Correlations through the Chemical Bond I: Homonuclear Shift Correlation --  |t Introducing the second dimension --  |t Correlation spectroscopy (COSY) --  |t Practical aspects of 2D NMR --  |t Coherence and coherence transfer --  |t Gradient-selected spectroscopy --  |t Alternative COSY sequences --  |t Total correlation spectroscopy (TOCSY) --  |t Correlating dilute spins: INADEQUATE --  |t Correlations through the Chemical Bond II: Heteronuclear Shift Correlation --  |t Sensitivity --  |t Heteronuclear single-bond correlation spectroscopy --  |t Heteronuclear multiple-bond correlation spectroscopy --  |t Traditional X-detected correlation spectroscopy --  |t Separating Shifts and Couplings: J-resolved Spectroscopy --  |t Heteronuclear J-resolved spectroscopy --  |t Homonuclear J-resolved spectroscopy --  |t "Indirect" homonuclear J-resolved spectroscopy --  |t Correlations through Space: The Nuclear Overhauser Effect --  |g Part I  |t Theoretical Aspects --  |t Definition of the NOE --  |t Steady-state NOEs --  |t Transient NOEs --  |t Rotating-frame NOEs --  |g Part II  |t Practical Aspects --  |t Measuring steady-state NOEs: NOE difference --  |t Measuring transient NOEs: NOESY --  |t Measuring rotating-frame NOEs: ROESY --  |t Measuring heteronuclear NOEs --  |t Experimental considerations --  |t Experimental Methods --  |t Composite pulses --  |t Broadband decoupling and spin-locks --  |t Selective excitation and shaped pulses --  |t Solvent suppression --  |t Recent methods 
520 |a From the initial observation of proton magnetic resonance in water and in paraffin, the discipline of nuclear magnetic resonance has seen unparalleled growth as an analytical method. Modern NMR spectroscopy is a highly developed, yet still evolving, subject which finds application in chemistry, biology, medicine, materials science and geology 
520 1 |a "In this book, emphasis is on the more recently developed methods of solution-state NMR applicable to chemical research, which are chosen for their wide applicability and robustness. These have, in many cases, already become established techniques in NMR laboratories, in both academic and industrial establishments. A considerable amount of information and guidance is given on the implementation and execution of the techniques described in this book, which will be equally at home in the NMR laboratory or on the chemist's or spectroscopist's desk."--Jacket 
520 8 |a In this book, emphasis is on the more recently developed methods of solution-state NMR applicable to chemical research, which are chosen for their wide applicability and robustness. These have, in many cases, already become established techniques in NMR laboratories, in both academic and industrial establishments. A considerable amount of information and guidance is given on the implementation and execution of the techniques described in this book 
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830 0 |a Tetrahedron organic chemistry series  |v v. 19 
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