A Complete Product Operator Theory for IS (I =1, S = 1) Spin System and Application to 3D HMQC-COSY NMR Experiment

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Abstract

There exist a variety of multi-pulse NMR experiments for spectral assignment of complex molecules in solution. The conventional heteronuclear multiple-qüantüm coherence (HMQC) NMR experiment provides correlation between weakly coupled hetero-nuclei. The COSY is one of the most popülar two-dimensional NMR experiment which is used to correlate J-coupled homo-nüclei of spectral assignment. The combination of the conventional HMQC and COSY NMR experiments yields a new experiment called 3D HMQC-COSY NMR experiment. The product operator theory is widely üsed for the analytical descriptions of multi-pulse NMR experiments for weakly coupled spin systems in liquuids. in this study, complete product operator theory for weakly coupled IS (I = 1, S = 1) spin system is presented by obtaining the evolütions of the prodüct operators ünder the spin-spin coupling Hamiltonian. As an application and a verification, analytical descriptions of 3D HMQC-COSY NMR experiment are obtained for weakly coupled ISnI'S'm (I = I’ = 1/2; S = S’ = 1; n = 1,2,3; m = 1,2) multi-spin systems. Then the estimated spectra of this experiment for various multi-spin systems are explained in detail. © 2014, Verlag der Zeitschrift für Naturforschung. All rights reserved.

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Saka, I., GümüS, S., & Gençten, A. (2009). A Complete Product Operator Theory for IS (I =1, S = 1) Spin System and Application to 3D HMQC-COSY NMR Experiment. Zeitschrift Fur Naturforschung - Section A Journal of Physical Sciences, 64(5–6), 377–386. https://doi.org/10.1515/zna-2009-5-612

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