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Subhradip Paul

Explore the profile of Subhradip Paul including associated specialties, affiliations and a list of published articles. Areas
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Articles 32
Citations 259
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Recent Articles
1.
Nelson A, Papawassiliou W, Paul S, Hediger S, Hung I, Gan Z, et al.
Faraday Discuss . 2024 Oct; 255(0):451-482. PMID: 39390961
Octacalcium phosphate (OCP, Ca(PO)(HPO)·5HO) is a notable calcium phosphate due to its biocompatibility, making it a widely studied material for bone substitution. It is known to be a precursor of...
2.
Harrabi R, Halbritter T, Alarab S, Chatterjee S, Wolska-Pietkiewicz M, Damodaran K, et al.
Phys Chem Chem Phys . 2024 Jan; 26(6):5669-5682. PMID: 38288878
Two polarizing agents from the AsymPol family, AsymPol-TEK and cAsymPol-TEK (methyl-free version) are introduced for MAS-DNP applications in non-aqueous solvents. The performance of these new biradicals is rationalized in detail...
3.
Paul S, Bouleau E, Reynard-Feytis Q, Arnaud J, Bancel F, Rollet B, et al.
J Magn Reson . 2023 Oct; 356:107561. PMID: 37837749
We report here instrumental developments to achieve sustainable, cost-effective cryogenic Helium sample spinning in order to conduct dynamic nuclear polarisation (DNP) and solid-state NMR (ssNMR) at ultra-low temperatures (<30 K)....
4.
Halbritter T, Harrabi R, Paul S, van Tol J, Lee D, Hediger S, et al.
Chem Sci . 2023 Apr; 14(14):3852-3864. PMID: 37035686
Magic angle spinning (MAS) dynamic nuclear polarization (DNP) has significantly broadened the scope of solid-state NMR to study biomolecular systems and materials. In recent years, the advent of very high...
5.
Elliott S, Duff B, Taylor-Hughes A, Cheney D, Corley J, Paul S, et al.
J Phys Chem B . 2022 Aug; 126(33):6281-6289. PMID: 35973071
Magic angle spinning nuclear magnetic resonance spectroscopy experiments are widely employed in the characterization of solid media. The approach is incredibly versatile but deleteriously suffers from low sensitivity, which may...
6.
Harrabi R, Halbritter T, Aussenac F, Dakhlaoui O, van Tol J, Damodaran K, et al.
Angew Chem Int Ed Engl . 2022 Jan; 61(12):e202114103. PMID: 35019217
Efficiently hyperpolarizing proton-dense molecular solids through dynamic nuclear polarization (DNP) solid-state NMR is still an unmet challenge. Polarizing agents (PAs) developed so far do not perform well on proton-rich systems,...
7.
Hughes A, Liu M, Paul S, Cooper A, Blanc F
J Phys Chem C Nanomater Interfaces . 2021 Jul; 125(24):13370-13381. PMID: 34239656
Pillar[]arenes are supramolecular assemblies that can perform a range of technologically important molecular separations which are enabled by their molecular flexibility. Here, we probe dynamical behavior by performing a range...
8.
Concistre M, Paul S, Carravetta M, Kuprov I, Williamson P
Chemistry . 2020 Aug; 26(68):15852-15854. PMID: 32827182
Combining dynamic nuclear polarization with proton detection significantly enhances the sensitivity of magic-angle spinning NMR spectroscopy. Herein, the feasibility of proton-detected experiments with slow (10 kHz) magic angle spinning was...
9.
Hope M, Rinkel B, Gunnarsdottir A, Marker K, Menkin S, Paul S, et al.
Nat Commun . 2020 May; 11(1):2224. PMID: 32376916
While lithium metal represents the ultimate high-energy-density battery anode material, its use is limited by dendrite formation and associated safety risks, motivating studies of the solid-electrolyte interphase layer that forms...
10.
Chen J, Wu X, Hope M, Qian K, Halat D, Liu T, et al.
Nat Commun . 2019 Nov; 10(1):5420. PMID: 31780658
Compared to nanomaterials exposing nonpolar facets, polar-faceted nanocrystals often exhibit unexpected and interesting properties. The electrostatic instability arising from the intrinsic dipole moments of polar facets, however, leads to different...