ERC Advanced Grant · 2024
Unleashing the power of steady-state high-resolution NMR: Methods, Molecules, Metabolism
Pulsed Fourier-transform (FT) has reigned supreme in nuclear magnetic resonance (NMR) for over 50 years, standing at the core of numerous analytical, pharmaceutical, materials, biophysical and medical applications. However, if spectral information is not a must, FT NMR is not necessarily the optimal way for maximizing sensitivity: when, as often happens, spin relaxation times are long and T1≈T2, steady-state free-precession (SSFP) experiments can provide a higher sensitivity per unit time. SSFP NMR applies a train of closely spaced pulses and works only at suitable offsets, and has therefore been assumed impractical when seeking high resolution among multiple chemical sites. We have…
From the public funding record at EU CORDIS. Describes the funded project, not the reviews below.