Artifact-free ultralow-temperature DNP-enhanced NMR of molecular assemblies at natural isotopic abundance.
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ABSTRACT: Magic-angle spinning dynamic nuclear polarization (MAS-DNP) has greatly increased solid-state NMR sensitivity, enabling multidimensional correlation experiments (e.g., 13C-13C and 13C-15N) at natural isotopic abundance. Yet, these experiments often suffer from t1-noise, an artifact that obscures weak cross-peaks, especially in natural abundance samples. Here, we present a method to suppress t1-noise in 13C-13C double-quantum-single-quantum (DQ-SQ) spectra by converting DQ coherences into longitudinal two-spin order (zz-terms), enabling selective removal of uncoupled 13C magnetization. This zz-filter, compatible with both J- and dipolar-based sequences, markedly improves the spectral quality on both commercial (100 K) and custom-built helium-spinning (30 K) MAS-DNP setups. Up to a fivefold increase in signal-to-noise ratio in the indirect dimension allows detection of previously hidden long-range correlations, including intermolecular contacts. This method yields the first artifact-free 13C-13C DQ-SQ spectrum at 30 K, expanding the analytical reach of MAS-DNP NMR for characterizing molecular assemblies at natural abundance.
SUBMITTER: Reynard-Feytis Q
PROVIDER: S-EPMC12716396 | biostudies-literature | 2025 Dec
REPOSITORIES: biostudies-literature
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