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Solid-state NMR spectroscopy
Solid-state nuclear magnetic resonance (NMR) spectroscopy is an atomic-level method to
determine the chemical structure, 3D structure and dynamics of solids and semi-solids. This …
determine the chemical structure, 3D structure and dynamics of solids and semi-solids. This …
Nonuniform sampling and non-Fourier signal processing methods in multidimensional NMR
Beginning with the introduction of Fourier Transform NMR by Ernst and Anderson in 1966,
time domain measurement of the impulse response (the free induction decay, FID) consisted …
time domain measurement of the impulse response (the free induction decay, FID) consisted …
Magic angle spinning NMR spectroscopy: a versatile technique for structural and dynamic analysis of solid-phase systems
T Polenova, R Gupta, A Goldbourt - 2015 - ACS Publications
Magic Angle Spinning (MAS) NMR spectroscopy is a powerful method for analysis of a
broad range of systems, including inorganic materials, pharmaceuticals, and …
broad range of systems, including inorganic materials, pharmaceuticals, and …
Magic Angle Spinning NMR of Proteins: High-Frequency Dynamic Nuclear Polarization and 1H Detection
Magic angle spinning (MAS) NMR studies of amyloid and membrane proteins and large
macromolecular complexes are an important new approach to structural biology. However …
macromolecular complexes are an important new approach to structural biology. However …
Sensitivity boosts by the CPMAS CryoProbe for challenging biological assemblies
Despite breakthroughs in MAS NMR hardware and experimental methodologies, sensitivity
remains a major challenge for large and complex biological systems. Here, we report that 3 …
remains a major challenge for large and complex biological systems. Here, we report that 3 …
How photoswitchable lipids affect the order and dynamics of lipid bilayers and embedded proteins
M Doroudgar, J Morstein, J Becker-Baldus… - Journal of the …, 2021 - ACS Publications
Altering the properties of phospholipid membranes by light is an attractive option for the
noninvasive manipulation of membrane proteins and cellular functions. Lipids with an …
noninvasive manipulation of membrane proteins and cellular functions. Lipids with an …
Evaluation of fast 2D NMR for metabolomics
AL Guennec, P Giraudeau, S Caldarelli - Analytical chemistry, 2014 - ACS Publications
Two-dimensional nuclear magnetic resonance (2D NMR) is increasingly explored as a tool
for metabolomics because of its superior resolution compared to one-dimensional NMR (1D …
for metabolomics because of its superior resolution compared to one-dimensional NMR (1D …
Perspectives in magnetic resonance: NMR in the post-FFT era
Multi-dimensional NMR spectra have traditionally been processed with the fast Fourier
transformation (FFT). The availability of high field instruments, the complexity of spectra of …
transformation (FFT). The availability of high field instruments, the complexity of spectra of …
Nonuniform sampling and maximum entropy reconstruction in multidimensional NMR
NMR spectroscopy is one of the most powerful and versatile analytic tools available to
chemists. The discrete Fourier transform (DFT) played a seminal role in the development of …
chemists. The discrete Fourier transform (DFT) played a seminal role in the development of …
Sensitivity of nonuniform sampling NMR
MR Palmer, CL Suiter, GE Henry… - The journal of …, 2015 - ACS Publications
Many information-rich multidimensional experiments in nuclear magnetic resonance
spectroscopy can benefit from a signal-to-noise ratio (SNR) enhancement of up to about 2 …
spectroscopy can benefit from a signal-to-noise ratio (SNR) enhancement of up to about 2 …