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Dynamic nuclear polarization enhanced multiple-quantum spin counting of molecular assemblies in vitrified solutions

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dc.contributor.author Nowotarski, M.S.
dc.contributor.author Potnuru, L.R.
dc.contributor.author Straub, J.S.
dc.contributor.author Chaklashiya, R.
dc.contributor.author Shimasaki, T.
dc.contributor.author Pahari, B.
dc.contributor.author Coffaro, H.
dc.contributor.author Jain, J.
dc.contributor.author Han, S.
dc.date.accessioned 2024-07-03T09:21:28Z
dc.date.available 2024-07-03T09:21:28Z
dc.date.issued 2024
dc.identifier.citation Journal of Physical Chemistry Letters. 15; 2024; 7084-7094. en_US
dc.identifier.uri https://doi.org/10.1021/acs.jpclett.4c00933
dc.identifier.uri http://irgu.unigoa.ac.in/drs/handle/unigoa/7326
dc.description.abstract Crystallization pathways are essential to various industrial, geological, and biological processes. In nonclassical nucleation theory, prenucleation clusters (PNCs) form, aggregate, and crystallize to produce higher order assemblies. Microscopy and X-ray techniques have limited utility for PNC analysis due to the small size (0.5-3 nm) and time stability constraints. We present a new approach for analyzing PNC formation based on sup(31)P nuclear magnetic resonance (NMR) spin counting of vitrified molecular assemblies. The use of glassing agents ensures that vitrification generates amorphous aqueous samples and offers conditions for performing dynamic nuclear polarization (DNP)-amplified NMR spectroscopy. We demonstrate that molecular adenosine triphosphate along with crystalline, amorphous, and clustered calcium phosphate materials formed via a nonclassical growth pathway can be differentiated from one another by the number of dipolar coupled sup(31)P spins. We also present an innovative approach for examining spin counting data, demonstrating that a knowledge-based fitting of integer multiples of cosine wave functions, instead of the traditional Fourier transform, provides a more physically meaningful retrieval of the existing frequencies. This is the first report of multiquantum spin counting of assemblies formed in solution as captured under vitrified DNP conditions, which can be useful for future analysis of PNCs and other aqueous molecular clusters. en_US
dc.publisher ACS Publications en_US
dc.subject Physics en_US
dc.title Dynamic nuclear polarization enhanced multiple-quantum spin counting of molecular assemblies in vitrified solutions en_US
dc.type Journal article en_US
dc.identifier.impf y


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