Abstract
For the first time, functionalized mesoporous silica nanoparticles (MSNs) with dinuclear Schiff-base complexes were synthesized as attractive organic-inorganic hybrids and their capability investigated for loading antibiotic drugs and immobilization of enzymes. 2D-hexagonal MCM-41 nanoparticles were synthesized by a sol-gel method and amino propyl trimethoxy silane (APTMS) anchored on the surface of the MSNs as a linker. MSN-APS nanoparticles were coordinated with dihydrazone Schiff-base complexes of copper(ii) and nickel(ii) by the nitrogen atom of APS for making MSN-APS-Cu2L and MSN-APS-Ni2L hybrids, respectively (L is the Schiff-base ligand). These novel mesoporous silica nanoparticles were characterized by various techniques, such as FT-IR, LA-XRD, FE-SEM, TEM, EDX, BET and TGA. The results show that the synthesized hybrids have high potential for loading gentamicin and immobilizing enzymes such as DNase, coagulase and α-amylase.
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CITATION STYLE
Tahmasbi, L., Sedaghat, T., Motamedi, H., & Mohammad kooti, N. (2023). Synthesis of novel mesoporous silica nanoparticles functionalized with succinic dihydrazone Schiff-base metal complexes and a study of their biological activities. Materials Advances, 4(13), 2770–2779. https://doi.org/10.1039/d3ma00066d
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