International audienceMesoporous hybrid silica-organic materials containing homogeneously distributed stable mono- or dinitroxide radicals covalently bound to the silica surface were developed as polarization matrixes for solid-state dynamic nuclear polarization (DNP) NMR experiments. For TEMPO-containing materials impregnated with water or 1,1,2,2-tetrachloroethane, enhancement factors of up to 36 were obtained at ∼100 K and 9.4 T without the need for a glass-forming additive. We show that the homogeneous radical distribution and the subtle balance between the concentration of radical in the material and the fraction of radicals at a sufficient inter-radical distance to promote the cross-effect are the main determinants for the DNP enhance...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
International audienceMesoporous hybrid silica-organic materials containing homogeneously distribute...
International audienceMesoporous hybrid silica-organic materials containing homogeneously distribute...
Hyperpolarization of NMR-active nuclei is key to gather high quality spectra of rare species and ins...
International audienceHyperpolarization of NMR-active nuclei is key to gather high quality spectra o...
International audienceDynamic nuclear polarisation (DNP) can significantly enhance the sensitivity o...
International audienceDynamic nuclear polarisation (DNP) can significantly enhance the sensitivity o...
CCC:000374035800006International audienceHybrid mesoporous silica materials with wall-embedded nitro...
International audienceDynamic nuclear polarisation (DNP) can significantly enhance the sensitivity o...
CCC:000374035800006International audienceHybrid mesoporous silica materials with wall-embedded nitro...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
CCC:000374035800006International audienceHybrid mesoporous silica materials with wall-embedded nitro...
CCC:000374035800006International audienceHybrid mesoporous silica materials with wall-embedded nitro...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
International audienceMesoporous hybrid silica-organic materials containing homogeneously distribute...
International audienceMesoporous hybrid silica-organic materials containing homogeneously distribute...
Hyperpolarization of NMR-active nuclei is key to gather high quality spectra of rare species and ins...
International audienceHyperpolarization of NMR-active nuclei is key to gather high quality spectra o...
International audienceDynamic nuclear polarisation (DNP) can significantly enhance the sensitivity o...
International audienceDynamic nuclear polarisation (DNP) can significantly enhance the sensitivity o...
CCC:000374035800006International audienceHybrid mesoporous silica materials with wall-embedded nitro...
International audienceDynamic nuclear polarisation (DNP) can significantly enhance the sensitivity o...
CCC:000374035800006International audienceHybrid mesoporous silica materials with wall-embedded nitro...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
CCC:000374035800006International audienceHybrid mesoporous silica materials with wall-embedded nitro...
CCC:000374035800006International audienceHybrid mesoporous silica materials with wall-embedded nitro...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...
International audienceA new nitroxide-based biradical having a long electron spin-lattice relaxation...