Porous silicon is one of the most explored nanostructured materials in various biomedical applications owing to its remarkable properties. However, its inherent chemical instability mandates a robust surface modification procedure, and proper surface bioengineering is essential to ensure its effectiveness in the biomedical field. In this study, we introduce a one-pot functionalization strategy that simultaneously stabilizes porous silicon nanoparticles and decorates their surface with carbohydrates through hydrosilylation chemistry, combining mild temperatures and a Lewis acid catalyst. This approach yielded a surface functionalization degree of 300 μmol g−1 in just 4 hours at 60 °C, significantly reducing both the prolonged reaction times and high temperatures typically associated with conventional hydrosilylation. Furthermore, this advancement opens the way for utilizing thermolabile molecules useful for surface bioengineering.

Mild‐Temperature Catalyzed Hydrosilylation for Simplified Carbohydrate Functionalization of Porous Silicon Nanoparticles / Nolli, Maria Grazia; Terracciano, Monica; Rea, Ilaria; D'Errico, Stefano; Placido Mineo, Giuseppe; De Stefano, Luca; Piccialli, Gennaro; Riela, Serena; Oliviero, Giorgia; Borbone, Nicola. - In: CHEMISTRY-A EUROPEAN JOURNAL. - ISSN 0947-6539. - 31:(2025). [10.1002/chem.202402818]

Mild‐Temperature Catalyzed Hydrosilylation for Simplified Carbohydrate Functionalization of Porous Silicon Nanoparticles

Nolli, Maria Grazia
Primo
;
Terracciano, Monica
;
Rea, Ilaria;D'Errico, Stefano;Piccialli, Gennaro;Oliviero, Giorgia
;
Borbone, Nicola
Ultimo
2025

Abstract

Porous silicon is one of the most explored nanostructured materials in various biomedical applications owing to its remarkable properties. However, its inherent chemical instability mandates a robust surface modification procedure, and proper surface bioengineering is essential to ensure its effectiveness in the biomedical field. In this study, we introduce a one-pot functionalization strategy that simultaneously stabilizes porous silicon nanoparticles and decorates their surface with carbohydrates through hydrosilylation chemistry, combining mild temperatures and a Lewis acid catalyst. This approach yielded a surface functionalization degree of 300 μmol g−1 in just 4 hours at 60 °C, significantly reducing both the prolonged reaction times and high temperatures typically associated with conventional hydrosilylation. Furthermore, this advancement opens the way for utilizing thermolabile molecules useful for surface bioengineering.
2025
Mild‐Temperature Catalyzed Hydrosilylation for Simplified Carbohydrate Functionalization of Porous Silicon Nanoparticles / Nolli, Maria Grazia; Terracciano, Monica; Rea, Ilaria; D'Errico, Stefano; Placido Mineo, Giuseppe; De Stefano, Luca; Piccialli, Gennaro; Riela, Serena; Oliviero, Giorgia; Borbone, Nicola. - In: CHEMISTRY-A EUROPEAN JOURNAL. - ISSN 0947-6539. - 31:(2025). [10.1002/chem.202402818]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/994011
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