Immobilisation of organocatalysts onto solid supports represents a very promising solution to tackle their low productivity by enabling their reuse. Herein, the use of NMR relaxation measurements, coupled with reaction screening, was used to investigate the effect of solvent interactions with the immobilised catalyst matrix on reactivity in an asymmetric organocatalysed aldol reaction. Important insights for the further development of such complex, yet promising catalytic systems are provided. This journal is

Di Carmine, G., Forster, L., Wang, S., Parlett, C., Carlone, A., D'Agostino, C. (2022). NMR relaxation time measurements of solvent effects in an organocatalysed asymmetric aldol reaction over silica SBA-15 supported proline. REACTION CHEMISTRY & ENGINEERING, 7(2), 269-274 [10.1039/d1re00471a].

NMR relaxation time measurements of solvent effects in an organocatalysed asymmetric aldol reaction over silica SBA-15 supported proline

Carmine D'Agostino
2022

Abstract

Immobilisation of organocatalysts onto solid supports represents a very promising solution to tackle their low productivity by enabling their reuse. Herein, the use of NMR relaxation measurements, coupled with reaction screening, was used to investigate the effect of solvent interactions with the immobilised catalyst matrix on reactivity in an asymmetric organocatalysed aldol reaction. Important insights for the further development of such complex, yet promising catalytic systems are provided. This journal is
2022
Di Carmine, G., Forster, L., Wang, S., Parlett, C., Carlone, A., D'Agostino, C. (2022). NMR relaxation time measurements of solvent effects in an organocatalysed asymmetric aldol reaction over silica SBA-15 supported proline. REACTION CHEMISTRY & ENGINEERING, 7(2), 269-274 [10.1039/d1re00471a].
Di Carmine, Graziano; Forster, Luke; Wang, Simeng; Parlett, Christopher; Carlone, Armando; D'Agostino, Carmine
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/914706
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