Facile synthesis of microporous sio2/triangular ag composite nanostructures for photocatalysis

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Abstract

In this article, we present a novel fabrication of microporous SiO2/triangular Ag nanoparticles for dye (methylene blue) adsorption and plasmon-mediated degradation. Microporous SiO2 nanoparticles with pore size \2 nm were synthesized using cetyltrimethylammonium bromide as a structure-directing agent and functionalized with APTMS ((3-aminopropyl) trimethoxysilane) to introduce amine groups. Amine-functionalized microporous silica was used for adsorption of triangular silver (Ag) nanoparticles. The synthesized microporous SiO2 nanostructures were investigated for adsorption of different dyes including methylene blue, congo red, direct green 26 and curcumin crystalline. Amine-functionalized microporous SiO2/triangular Ag nanostructures were used for plasmon-mediated photocatalysis of methylene blue. The experimental results revealed that the large surface area of microporous silica facilitated adsorption of dye. Triangular Ag nanoparticles, due to their better charge carrier generation and enhanced surface plasmon resonance, further enhanced the photocatalysis performance.

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APA

Sirohi, S., Singh, A., Dagar, C., Saini, G., Pani, B., & Nain, R. (2017). Facile synthesis of microporous sio2/triangular ag composite nanostructures for photocatalysis. Applied Nanoscience (Switzerland), 7(8), 633–643. https://doi.org/10.1007/s13204-017-0597-4

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