Fast 2D Solution-state NMR: Concepts and Applications
Written by active investigators in the field, this book describes state-of-the-art methods that can accelerate the acquisition of 2D NMR spectra in solution-state NMR. The acquisition of fast multi-dimensional NMR data has motivated numerous ground-breaking developments in NMR pulse sequences and associated data processing methods. These in turn have revolutionized the way 2D NMR acquisitions are performed, at the same time broadening the scope of applications of 2D NMR.
The first part of the book provides an in-depth description of the concepts and implementation of major fast 2D NMR methods. The second part follows with illustrations of how such methods can be used in applications that require the acquisition of fast 2D NMR spectra, from reaction monitoring to hyperpolarization, including applications to a broad variety of samples and experimental conditions.
Appealing to readers from both the methodology and applications communities, this title will fill a gap in the market for a book focused on small molecule NMR, and researchers from both academia and industry will find a rich plethora of knowledge.
Fast 2D Solution-state NMR: Concepts and Applications, The Royal Society of Chemistry, 2023.
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Table of contents
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Chapter 1: The Role of Pulsed-field Gradients in Modern NMR Pulse Sequence Designp1-41ByTeodor ParellaTeodor ParellaServei de Ressonància Magnètica Nuclear, Universitat Autònoma de BarcelonaE-08193 Bellaterra (Barcelona)CataloniaSpain[email protected]Search for other works by this author on:
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Chapter 2: Top Resolution in 2D NMR Spectroscopy Using Spectral Aliasingp42-59ByD. JeanneratD. JeanneratSearch for other works by this author on:
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Chapter 3: Fast Pulsing 2D NMR Methodsp60-83ByBurkhard LuyBurkhard LuyInstitute of Organic Chemistry and Institute for Biological Interfaces 4-Magnetic Resonance, Karlsruhe Institute of Technology (KIT)Fritz-Haber-Weg 676133KarlsruheGermany[email protected]Search for other works by this author on:
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Chapter 4: Multi-FID Detected 2D NMRp84-114ByJ. R. J. Yong;J. R. J. YongDepartment of Chemistry, University of Oxford, Chemistry Research Laboratory12 Mansfield RoadOxfordOX1 3TAUK[email protected]Search for other works by this author on:Ēriks Kupče;Ēriks KupčeBruker UK LtdBanner LaneCoventryCV4 9GHUKSearch for other works by this author on:T. D. W. ClaridgeT. D. W. ClaridgeDepartment of Chemistry, University of Oxford, Chemistry Research Laboratory12 Mansfield RoadOxfordOX1 3TAUK[email protected]Search for other works by this author on:
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Chapter 5: The Non-uniform Sampling of 2D NMR Datap115-153ByAlexandra Shchukina;Alexandra ShchukinaFaculty of ChemistryUniversity of Warsaw, Pasteura 102-093WarsawPolandSearch for other works by this author on:Paweł Kasprzak;Paweł KasprzakFaculty of PhysicsUniversity of Warsaw, Pasteura 502-093WarsawPolandSearch for other works by this author on:Mateusz Urbańczyk;Mateusz UrbańczykInstitute of Physical Chemistry, Polish Academy of SciencesKasprzaka 44/5201-224WarsawPolandSearch for other works by this author on:Krzysztof KazimierczukKrzysztof KazimierczukSearch for other works by this author on:
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Chapter 6: Signal Processing for Highly Resolved 2D NMRp154-185ByD. A. SnyderD. A. SnyderDepartment of Chemistry, College of Science and Health, William Paterson University of NJ300 Pompton RoadWayne07470NJUSA[email protected]Search for other works by this author on:
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Chapter 7: Ultrafast 2D NMRp186-220ByB. GouilleuxB. GouilleuxUniversité Paris-Saclay, UFR d'Orsay, RMN en Milieu Orienté, ICMMOUMR CNRS 8182, 17–19 Av. des Sciences, 91400 OrsayFrance[email protected]Search for other works by this author on:
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Chapter 8: Pure Shift 2D NMR Spectroscopyp221-249ByRalph W. Adams;Ralph W. AdamsDepartment of Chemistry, The University of ManchesterOxford RoadManchesterM13 9PLUK[email protected]Search for other works by this author on:Laura CastañarLaura CastañarDepartment of Chemistry, The University of ManchesterOxford RoadManchesterM13 9PLUK[email protected]Department of Organic Chemistry, Faculty of Chemical Science, University Complutense of MadridCiudad Universitaria s/n28040 MadridSpain[email protected]Search for other works by this author on:
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Chapter 9: Fast 2D NMR for Reaction and Process Monitoringp251-283ByJ.-N. DumezJ.-N. DumezSearch for other works by this author on:
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Chapter 10: Fast 2D NMR to Investigate Dynamic Events in Biomoleculesp284-310ByF. Bruno;F. BrunoConsorzio Interuniversitario Risonanze Magnetiche di MetalloproteineVia Luigi Sacconi 650019 Sesto FiorentinoItaly[email protected]Magnetic Resonance Center (CERM), Università degli Studi di FirenzeVia Luigi Sacconi 650019 Sesto FiorentinoItalyDepartment of Chemistry “Ugo Schiff”Università degli Studi di Firenze, Via della Lastruccia 350019 Sesto FiorentinoItalySearch for other works by this author on:E. Luchinat;E. LuchinatConsorzio Interuniversitario Risonanze Magnetiche di MetalloproteineVia Luigi Sacconi 650019 Sesto FiorentinoItaly[email protected]Department of Agricultural and Food Sciences DISTALAlma Mater Studiorum Università degli Studi di Bologna, Piazza Goidanich 6047521 CesenaItalySearch for other works by this author on:K. Kazimierczuk;K. KazimierczukCentre of New TechnologiesUniwersytet Warszawski, Banacha 2C02-097 WarszawaPolandSearch for other works by this author on:E. RaveraE. RaveraConsorzio Interuniversitario Risonanze Magnetiche di MetalloproteineVia Luigi Sacconi 650019 Sesto FiorentinoItaly[email protected]Magnetic Resonance Center (CERM), Università degli Studi di FirenzeVia Luigi Sacconi 650019 Sesto FiorentinoItalyDepartment of Chemistry “Ugo Schiff”Università degli Studi di Firenze, Via della Lastruccia 350019 Sesto FiorentinoItalyFlorence Data ScienceUniversità degli Studi di FirenzeItalySearch for other works by this author on:
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Chapter 11: Application of Fast 2D NMR Methods in the Pharmaceutical Industryp311-346ByG. S. WalkerG. S. WalkerSearch for other works by this author on:
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Chapter 12: Fast 2D NMR and Hyperpolarizationp347-376ByChristian HiltyChristian HiltySearch for other works by this author on:
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Chapter 13: Fast 2D NMR for Metabolomicsp377-414ByPatrick GiraudeauPatrick GiraudeauSearch for other works by this author on:
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Chapter 14: Fast Multi-dimensional NMR for In Vivo Spectroscopyp415-440ByC. Oerther;C. OertherBruker BioSpin MRI GmBHEttlingenGermanySearch for other works by this author on:I. Marco-RiusI. Marco-RiusSearch for other works by this author on:
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Chapter 15: Combining Fast 2D NMR Methods and Oriented Mediap441-475ByPhilippe Lesot;Philippe LesotUniversité Paris-Saclay, UMR CNRS 8182, Institut Chimie Moléculaire et des Matériaux d'Orsay, ICMMO, Equipe RMN en Milieu OrientéSite BPC (HM1), 17–19 Avenue des Sciences91400 OrsayFrance[email protected]Centre National de la Recherche Scientifique (CNRS)3 rue Michel AngeF-75016 ParisFranceSearch for other works by this author on:Olivier LafonOlivier LafonUniversité de Lille, CNRS, Centrale Lille, Université Artois, UMR CNRS 8181Unité de Catalyse et Chimie du Solide, UCCSF-59000 LilleFranceSearch for other works by this author on:
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Chapter 16: Fast 2D NMR in Inhomogeneous Magnetic Fieldsp476-508ByZhong Chen;Zhong ChenDepartment of Electronic Science, Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, State Key Laboratory of Physical Chemistry of Solid SurfacesXiamen University, Siming South Road 422XiamenChina[email protected]Search for other works by this author on:Yuqing HuangYuqing HuangDepartment of Electronic Science, Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, State Key Laboratory of Physical Chemistry of Solid SurfacesXiamen University, Siming South Road 422XiamenChina[email protected]Search for other works by this author on:
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Chapter 17: Fast 2D NMR to Study Microstructuresp509-528ByVille-Veikko TelkkiVille-Veikko TelkkiSearch for other works by this author on:
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