Nuclear magnetic resonance (NMR) spectroscopy of protons in protonated solids is challenging. Fast magic angle spinning (MAS) and homonuclear decoupling schemes, in conjunction, with high magnetic fields have improved the proton resolution. However, experiments to quantitatively measure 1H–1H distances still remain elusive due to the dense proton–proton dipolar coupling network. A novel MAS solid-state NMR pulse sequence is proposed to selectively recouple and measure interproton distances in protonated samples. The phase-modulated sequence combined with a judicious choice of transmitter frequency is used to measure quantitative 1H–1H distances on the order of 3 Å in l-histidine·HCl·H2O, despite the presence of other strongly coupled proton...
In this contribution we present a comprehensive approach to study hydrogen bonding in biological and...
Narrow 1H NMR linewidths can be obtained for fully protonated protein samples in the solid state by ...
Standard NMR methods applied to the structural analysis of proteins are based on the measurement of ...
We present a proton-selective method to determine 17O-1H distances in organic, biological and biomim...
We acknowledge Prof Matthias Ernst, ETH, Zurich, for useful discussions and Dr Rajalakshmi and Dr Ka...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...
Protein structure determination by solid-state NMR requires the measurement of many interatomic dist...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...
We describe new correlation experiments suitable for determining long-range 1H–1H distances in 2H,15...
Biological magic angle spinning (MAS) solid-state nuclear magnetic resonance spectroscopy has develo...
When combined with high-frequency (currently 60 kHz) magic-angle spinning (MAS), proton detection bo...
Solid-state Nuclear Magnetic Resonance (NMR) spectroscopy has been used successfully to elucidate at...
By introducing dipolar recoupling methods to high-resolution magic-angle spinning (HRMAS) NMR spectr...
Very fast magic-angle spinning (MAS > 80 kHz) NMR combined with high-field magnets has enabled the a...
New solid-state NMR experiments for measuring internuclear distances are designed using symmetry pri...
In this contribution we present a comprehensive approach to study hydrogen bonding in biological and...
Narrow 1H NMR linewidths can be obtained for fully protonated protein samples in the solid state by ...
Standard NMR methods applied to the structural analysis of proteins are based on the measurement of ...
We present a proton-selective method to determine 17O-1H distances in organic, biological and biomim...
We acknowledge Prof Matthias Ernst, ETH, Zurich, for useful discussions and Dr Rajalakshmi and Dr Ka...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...
Protein structure determination by solid-state NMR requires the measurement of many interatomic dist...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...
We describe new correlation experiments suitable for determining long-range 1H–1H distances in 2H,15...
Biological magic angle spinning (MAS) solid-state nuclear magnetic resonance spectroscopy has develo...
When combined with high-frequency (currently 60 kHz) magic-angle spinning (MAS), proton detection bo...
Solid-state Nuclear Magnetic Resonance (NMR) spectroscopy has been used successfully to elucidate at...
By introducing dipolar recoupling methods to high-resolution magic-angle spinning (HRMAS) NMR spectr...
Very fast magic-angle spinning (MAS > 80 kHz) NMR combined with high-field magnets has enabled the a...
New solid-state NMR experiments for measuring internuclear distances are designed using symmetry pri...
In this contribution we present a comprehensive approach to study hydrogen bonding in biological and...
Narrow 1H NMR linewidths can be obtained for fully protonated protein samples in the solid state by ...
Standard NMR methods applied to the structural analysis of proteins are based on the measurement of ...