to overcome the limitations of TOCSY by using two-field NMR spectroscopy. Léonard Strouk, Samuel Cousin, Cyril Charlier, Geoffrey Bodenhausen, et al.
Daniel Abergel, Geoffrey Bodenhausen. Predicting internal protein dynamics from structures using coupled networks of hindered rotators. The Journal of Chemical Physics 2005, 123, 204901. DOI: 10.1063/1.2110028. Daniel Abergel, Geoffrey Bodenhausen. A simple model for NMR relaxation in the presence of internal motions with dynamical coupling.
Geoffrey Bodenhausen (* 7.Mai 1951 in Den Haag, Holland) ist ein französischer Chemiker.Sein Arbeitsgebiet ist die NMR-Spektroskopie. Inventors: Geoffrey Bodenhausen, Paul Vasos, Riddhiman Sarkar Singlet-state exchange NMR spectroscopy for the study of very slow dynamic proceses Publication number: 20090039883 Journal of Biomolecular Nmr. PMID 32040802 DOI: 10.1007/s10858-020-00301-5 : 0.76: 2019: Carnevale D, Marhabaie S, Pelupessy P, Bodenhausen G. Orientation-Dependent Proton Relaxation of Water Molecules Trapped in Solids: Crystallites with Long-Lived Magnetization. The Journal of Physical Chemistry. A. PMID 31633935 DOI: 10.1021/acs.jpca.9b07303 Bodenhausen G, Freeman R, Morris GA. A simple pulse sequence for selective excitation in Fourier transform NMR. Journal of Magnetic Resonance (1969). 1976 Jul;23(1):171-175. Aude Sadet, Cristina Stavarache, Mihaela Bacalum, Mihai Radu, Geoffrey Bodenhausen, Dennis Kurzbach, Paul R. Vasos. Hyperpolarized Water Enhances Two-Dimensional Proton NMR Correlations: A New Approach for Molecular Interactions.
Doctoral dissertations supervised by G. Bodenhausen … "The requirement for a major monograph on the subject of pulse NMR spectroscopy in one and two dimensions has been met by Ernst, Bodenhausen and Wokaun. The book is a triumph of careful and clear exposition ranging over liquids, solids and spin-imaging, with all the new methods subject to detailed examination and illustrated with examples. 2012-07-11 Geoffrey Bodenhausen Festschrift 12 Jun 2020–30 Jun 2021 | Daniel Abergel, Fabien Ferrage, and Konstantin Ivanov | Information Information Two-dimensional (2D) NMR spectroscopy has been developed during the past decade to become an extremely powerful tool, greatly expanding the applicability of NMR to chemical and biochemical structural problems. The fundamental aspects of 2D NMR will be discussed and some of the basic pulse schemes will be treated in more detail. Singlet states with lifetimes that are longer than spin−lattice relaxation times TS ≫ T1 offer unique opportunities for studying very slow dynamic processes in solution-state NMR. A set of novel experiments can achieve broadband excitation of singlet states in pairs of coupled spins.
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Daniel Abergel, Geoffrey Bodenhausen. Predicting internal protein dynamics from structures using coupled networks of hindered rotators. The Journal of Chemical Physics 2005, 123, 204901. DOI: 10.1063/1.2110028. Daniel Abergel, Geoffrey Bodenhausen. A simple model for NMR relaxation in the presence of internal motions with dynamical coupling.
The ruthenium-containing sensitizing dye N719 grafted on TiO2 nanoparticles was investigated by solidstate NMR. The carbon resonances are assigned by means of 13C cross-polarized dipolar dephasing experiments. DFT calculations of the carbon magnetic shielding tensors accurately describe the changes in chemical shifts observed upon grafting onto a titania surface via one or two carboxylic G Bodenhausen, R Freeman, R Niedermeyer, DL Turner. Journal of Magnetic 1977.
Inventors: Geoffrey Bodenhausen, Paul Vasos, Riddhiman Sarkar Singlet-state exchange NMR spectroscopy for the study of very slow dynamic proceses Publication number: 20090039883
Chiarparin, E.; Pelupessy, P.; Bodenhausen, G. "Selective cross-polarization in solution sate NMR" Molecular Physics, 1998, 95 Bodenhausen, G. "Highly selective excitation in bimolecular NMR by frequency-switched, single transition cross-polarization" Journal of … Marhabaie S, Bodenhausen G, Pelupessy P. (2018) Advances in single-scan time-encoding magnetic resonance imaging. Scientific Reports. 8: 10891: Kaderavek P, Ferrage F, Bodenhausen G, et al. (2018) High-Resolution NMR of Folded Proteins in Hyperpolarized Physiological Solvents. Chemistry (Weinheim An Der Bergstrasse, Germany) Hyperpolarized water can selectively enhance NMR signals of rapidly exchanging protons in osteopontin (OPN), a metastasis-associated intrinsically disordered protein (IDP), at near-physiological pH and temperature. The transfer of magnetization from hyperpolarized water is limited to solvent-exposed … Abstract.
Geoffrey Bodenhausen, who is famous for his works in various fields of magnetic resonance. Singlet states with lifetimes that are longer than spin−lattice relaxation times TS ≫ T1 offer unique opportunities for studying very slow dynamic processes in solution-state NMR. A set of novel experiments can achieve broadband excitation of singlet states in pairs of coupled spins. The most elaborate of these experiments, two-dimensional singlet-state exchange spectroscopy (SS-EXSY), is
The spin echo is the single most important building block in modern NMR spectroscopy, but echo modulation by scalar couplings J can severely complicate its use. We show for the first time that a general but unacknowledged solution to such complications already exists. Geoffrey Bodenhausen (* 7.Mai 1951 in Den Haag, Holland) ist ein französischer Chemiker.Sein Arbeitsgebiet ist die NMR-Spektroskopie. Inventors: Geoffrey Bodenhausen, Paul Vasos, Riddhiman Sarkar Singlet-state exchange NMR spectroscopy for the study of very slow dynamic proceses Publication number: 20090039883
Journal of Biomolecular Nmr. PMID 32040802 DOI: 10.1007/s10858-020-00301-5 : 0.76: 2019: Carnevale D, Marhabaie S, Pelupessy P, Bodenhausen G. Orientation-Dependent Proton Relaxation of Water Molecules Trapped in Solids: Crystallites with Long-Lived Magnetization.
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1976 Jul;23(1):171-175.
Member of the editorial board, "Journal of Magnetic Resonance", San Diego, since 1996. Member of the Editorial Board, "Progress in NMR Spectroscopy”, since 2012. ELSEVIER 3 November 1995 Chemical Physics Letters 245 (1995) 415-420 CHEMICAL PHYSICS LEli'rERS Broadband decoupling in NMR with frequency-modulated 'chirp' pulses 1 Riqiang Fu, Geoffrey Bodenhausen 2 Center for Interdisciplinary Magnetic Resonance, National High Magnetic Field Laboratory. 1800 East Paul Dirac Drive, Tallahassee, FL 32310, USA Received 31 July 1995; in final form 4 September
JOURNAL OF MAGNETIC RESONANCE Só, 370-388 (1984) Selection of Coherence-Transfer Pathways in NMR Pulse Experiments GEOFFREY BODENHAUSEN, HERBERT KOGLER,* AND R. R. ERNST Laboratorium für Physikalische Chemie, Eidgenõssische Technische Hochschule, 8092 Zurich, Switzerland Received September 29, 1983; revised December 13, 1983 se experiments are described in terms of pathways through various
Daniel Abergel, Geoffrey Bodenhausen.
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Daniel Abergel, Geoffrey Bodenhausen. Predicting internal protein dynamics from structures using coupled networks of hindered rotators. The Journal of Chemical Physics 2005, 123, 204901. DOI: 10.1063/1.2110028. Daniel Abergel, Geoffrey Bodenhausen. A simple model for NMR relaxation in the presence of internal motions with dynamical coupling.
Predicting internal protein dynamics from structures using coupled networks of hindered rotators. The Journal of Chemical Physics 2005, 123, 204901. DOI: 10.1063/1.2110028.
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G Bodenhausen, R Freeman, R Niedermeyer, DL Turner. Journal of Magnetic Resonance (1969) 26 (1), 133-164, 1977. 294: 1977: NMR cross polarization by adiabatic passage through the Hartmann—Hahn condition (APHH) S Hediger, BH Meier, ND Kurur, G Bodenhausen, RR Ernst.
Two-dimensional (2D) NMR spectroscopy has been developed during the past decade to become an extremely powerful tool, greatly expanding the applicability of NMR to chemical and biochemical structural problems. The fundamental aspects of 2D NMR will be discussed and some of the basic pulse schemes will be treated in more detail. 138 GEOFFREY BODENHAUSEN in theoretical studies of coherent optical phenomena, which inspired the pioneering NMR studies by Hashi and co-workers, and by Ernst and his group in the Written by one of the world's leading NMR research teams, this monograph presents the most comprehensive and up-to-date treatment of nuclear magnetic resonance spectroscopy available.