Dual soft-template system based on colloidal chemistry for the synthesis of hollow mesoporous silica nanoparticles

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Abstract

A new dual soft-template system comprising the asymmetric triblock copolymer poly(styrene-b-2-vinyl pyridine-b-ethylene oxide) (PS-b-P2VP-b-PEO) and the cationic surfactant cetyltrimethylammonium bromide (CTAB) is used to synthesize hollow mesoporous silica (HMS) nanoparticles with a center void of around 17 nm. The stable PS-b-P2VP-b-PEO polymeric micelle serves as a template to form the hollow interior, while the CTAB surfactant serves as a template to form mesopores in the shells. The P2VP blocks on the polymeric micelles can interact with positively charged CTA+ ions via negatively charged hydrolyzed silica species. Thus, dual soft-templates clearly have different roles for the preparation of the HMS nanoparticles. Interestingly, the thicknesses of the mesoporous shell are tunable by varying the amounts of TEOS and CTAB. This study provides new insight on the preparation of mesoporous materials based on colloidal chemistry. The right mix: A new dual soft-template system comprising the asymmetric triblock copolymer poly(styrene-b-2-vinyl pyridine-b-ethylene oxide) (PS-b-P2VP-b-PEO) and the cationic surfactant cetyltrimethylammonium bromide (CTAB) is used to synthesize hollow mesoporous silica (HMS) nanoparticles. The thicknesses of the mesoporous shell are tunable by varying the amounts of TEOS and CTAB.

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Li, Y., Bastakoti, B. P., Imura, M., Tang, J., Aldalbahi, A., Torad, N. L., & Yamauchi, Y. (2015). Dual soft-template system based on colloidal chemistry for the synthesis of hollow mesoporous silica nanoparticles. Chemistry - A European Journal, 21(17), 6375–6380. https://doi.org/10.1002/chem.201406137

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