Abstract

A computer-optimized pulse sequence for homonuclear coherence transfer in the rotating frame has been devised. The main goal has been to maximize coherent magnetization transfers over an extended resonance offset range and, simultaneously, to suppress contributions from dipolar cross relaxation, i.e. leading to a “clean” spectrum. The calculated and experimental efficiency of this pulse sequence is compared with traditional pulse sequences which are based on well-known spin-decoupling sequences.

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