16.6
Insensitive nuclei enhanced by polarization transfer, or INEPT, uses protons or other sensitive, abundant nuclei to strengthen NMR signals originating from low-abundance, low-sensitivity nuclei, like carbon-13 and nitrogen-15.
For example, the proton–carbon-13 pulse sequence involves a combination of 90-degree and 180-degree pulses applied to the high-sensitivity and low-sensitivity nuclei.
Coupling-constant-based delays between pulses allow precise relaxation through space or bond interactions and transfer polarization to low-sensitivity nuclei via spin coupling.
The pulses and delays together invert the net magnetization of protons coupled to carbon-13 in only one of its spin states, ultimately enhancing the carbon-13 signals more than NOE does.
INEPT's effectiveness is seen in the proton-coupled carbon-13 spectrum of pyridine. The three types of pyridine carbon nuclei are all split into doublets of some additional multiplicity. For example, C2 is a doublet of multiplets and is located farthest downfield at about 40 ppm.
Insensitive Nuclei Enhanced by Polarization Transfer (INEPT) is an advanced Nuclear Magnetic Resonance (NMR) technique specifically designed to detect…
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