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Title: Sine-squared shifted pulses for recoupling interactions in solid-state NMR. Author: Jain MG, Rajalakshmi G, Equbal A, Mote KR, Agarwal V, Madhu PK. Journal: J Chem Phys; 2017 Jun 28; 146(24):244201. PubMed ID: 28668030. Abstract: Rotational-Echo DOuble-Resonance (REDOR) is a versatile experiment for measuring internuclear distance between two heteronuclear spins in solid-state NMR. At slow to intermediate magic-angle spinning (MAS) frequencies, the measurement of distances between strongly coupled spins is challenging due to rapid dephasing of magnetisation. This problem can be remedied by employing the pulse-shifted version of REDOR known as Shifted-REDOR (S-REDOR) that scales down the recoupled dipolar coupling. In this study, we propose a new variant of the REDOR sequence where the positions of the π pulses are determined by a sine-squared function. This new variant has scaling properties similar to S-REDOR. We use theory, numerical simulations, and experiments to compare the dipolar recoupling efficiencies and the experimental robustness of the three REDOR schemes. The proposed variant has advantages in terms of radiofrequency field requirements at fast MAS frequencies.[Abstract] [Full Text] [Related] [New Search]