16.11
Heteronuclear correlation techniques investigate the coupling between different nuclei—often a proton and carbon-13 or nitrogen-15.
A typical spectrum displays the X-nucleus chemical shift on one axis and the proton chemical shift on the other, with cross-peaks indicating the proton–X correlations.
Standard heteronuclear correlation spectroscopy, or HETCOR, enhances X-nucleus signals using polarization and is preferred for high X-axis resolution.
The heteronuclear single-quantum and multiple-quantum correlation techniques—HSQC and HMQC —explore proton–X one-bond correlations.
HSQC generates a spectrum like that of HMQC but uses a different suppression method, resulting in higher X-nucleus peak resolution.
Heteronuclear multiple-bond correlation or HMBC, focuses on longer-range proton–X connectivity, ignoring direct one-bond correlations.
Gradient HMBC enhances the suppression of interfering signals, making it useful for complex molecules with overlapping signals
Heteronuclear correlation spectroscopy is an analytical technique that investigates the coupling between different types of nuclei, often a proton and…
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