Residual Dipolar Couplings by Off-Magic-Angle Spinning in Solid-State Nuclear Magnetic Resonance Spectroscopy
Giuseppe Pileio, Ying Guo, Tran Nghia Pham, John M. Griffin, Malcolm H. Levitt, Steven P. Brown
Abstract
Giuseppe Pileio, Ying Guo, Tran Nghia Pham, John M. Griffin, Malcolm H. Levitt, Steven P. Brown
Abstract
A solid-state NMR analogue of the solution-state residual dipolar coupling effect is demonstrated. A small misset of the spinning axis by less than 0.5° changes the modulation frequency of spin−echoes, allowing the estimation of internuclear dipole−dipole couplings and hence internuclear distances.
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A solid-state NMR analogue of the solution-state residual dipolar coupling effect is demonstrated. A small misset of the spinning axis by less than 0.5° changes the modulation frequency of spin−echoes, allowing the estimation of internuclear dipole−dipole couplings and hence internuclear distances.
Key concepts: Chemistry, Solid-state nuclear magnetic resonance, Magic angle spinning, Residual dipolar coupling, Magnetic dipole–dipole interaction, Dipole, Magic angle, Spinning