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Large-scale high-quality 2D silica crystals: dip-drawing formation and decoration with gold nanorods and nanospheres for SERS analysis

Year: 2014

Journal: NANOTECHNOLOGY, Vol. 25, p -, 20150722

Authors: Khanadeev, Vitaly A.; Khlebtsov, Boris N.; Klimova, Svetlana A.; Tsvetkov, Mikhail Yu; Bagratashvili, Victor N.; Sukhorukov, Gleb B.; Khlebtsov, Nikolai G.

Organizations: Russian Acad Sci, Inst Biochem & Physiol Plants & Microorganisms, Saratov 410049, Russia; Saratov NG Chernyshevskii State Univ, Saratov 410012, Russia; Russian Acad Sci, Inst Laser & Informat Technol, Troitsk 142190, Russia; Univ London, Sch Engn & Mat Sci, London E1 4NS, England

High-quality colloidal crystals (CCs) are important for use in photonic research and as templates for large-scale plasmonic SERS substrates. We investigated how variations in temperature, colloid concentration, and dip-drawing parameters (rate, incubation time, etc) affect the structure of 2D CCs formed by highly monodisperse silica nanoparticles (SiNPs) synthesized in an L-arginine solution and regrown by a modified Stober method. The best quality 2D CCs were obtained with aqueous 12 wt% colloids at a temperature of 25 degrees C, an incubation time of 1 min, and a drawing rate of 50 mm min(-1). Assembling of gold nanorods (GNRs) on 2D CCs resulted in the formation of ring-like chains with a preferential tail-to-tail orientation along the hexagonal boundaries. To the best of our knowledge, this is the first time that such nanostructures have been prepared. Owing to the preferential tail-to-tail packing of GNRs, 2D SiNP CC + GNR substrates demonstrated an analytical SERS enhancement of about 8000, which was 10 to 15 times higher than that for self-assembled GNRs on a silicon wafer. In addition, the analytical SERS enhancement was almost 60 times lower after replacing the nanorods in 2D SiNP CC + GNR substrates with 25 nm gold nanospheres.