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Multifunctionalized Mesostructured Silica Nanoparticles Containing Mn2 Complex for Improved Catalase-Mimicking Activity in Water.

Tristan PelluauSaad SeneBeltzane Garcia-CireraBelén AlbelaLaurent BonneviotJoulia LarionovaYannick Guari
Published in: Nanomaterials (Basel, Switzerland) (2022)
We report the synthesis of a hybrid nanocatalyst obtained through the immobilization of bio-inspired [{Mn(bpy)(H 2 O)}(µ-2-MeC 6 H 4 COO) 2 (µ-O){Mn(bpy)(NO 3 )}]NO 3 compound into functionalized, monodispersed, mesoporous silica nanoparticles. The in situ dual functionalization sol-gel strategy adopted here leads to the synthesis of raspberry-shaped silica nanoparticles of ca. 72 nm with a large open porosity with preferential localization of 1,4-pyridine within the pores and sulfobetaine zwitterion on the nanoparticles' periphery. These nano-objects exhibit improved catalase-mimicking activity in water thanks to the encapsulation/immobilization of the catalytic active complex and high colloidal stability in water, as demonstrated through the dismutation reaction of hydrogen peroxide.
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