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13C‐15N Connectivity networks via unsymmetrical indirect covariance processing of 1H‐13C HSQC and 1H‐15N IMPEACH spectra
Authors:Gary E Martin  Bruce D Hilton  Patrick A Irish  Kirill A Blinov  Antony J Williams
Institution:1. Schering‐Plough Research Institute, Rapid Structure Characterization Laboratory, Pharmaceutical Sciences, Summit, NJ 07901;2. Advanced Chemistry Development, Moscow Department, Moscow 117513, Russian Federation;3. Advanced Chemistry Development, Toronto, Ontario, M5C 1T4, Canada
Abstract: chemical structure image Long‐range 1H‐15N heteronuclear shift correlation methods at natural abundance to facilitate the elucidation of small molecule structures have assumed a role of growing importance over the past decade. Recently, there has also been a high level of interest in the exploration of indirect covariance NMR methods. From two coherence transfer experiments, A→B and A→C, it is possible to indirectly determine B?C. We have shown that unsymmetrical indirect covariance methods can be employed to indirectly determine several types of hyphenated 2D NMR data from higher sensitivity experiments. Examples include the calculation of hyphenated 2D NMR spectra such as 2D GHSQC‐COSY and GHSQC‐NOESY from the discrete component 2D NMR experiments. We now wish to report the further extension of unsymmetrical indirect covariance NMR methods for the combination of 1H‐13C GHSQC and 1H‐15N longrange (GHMBC, IMPEACH‐MBC, CIGAR‐HMBC, etc.) heteronuclear chemical shift correlation spectra to establish 13C‐15N correlation pathways.
Keywords:
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