The Properties of AuSiO 2 Nanoparticles with Oriented Channel in Benzyl Alcohol Oxidation M. Ng, Prof. M. Meneghetti, E. Catari, S. Peng SUNY Binghamton,

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The Properties of AuSiO 2 Nanoparticles with Oriented Channel in Benzyl Alcohol Oxidation M. Ng, Prof. M. Meneghetti, E. Catari, S. Peng SUNY Binghamton, Federal University of Alagoas, State University of New York at Oswego ConclusionReferences Acknowledgements IntroductionMethods Objectives Results Characterization of AuSiO 2 I. Scanning Microscope Images(SEM) & Transmission Microscope Image (TEM) II. UV-vis Spectrum The objectives of the project include: - Synthesis and characterization of gold nanoparticles hollow mesoporous silica spheres with oriented channels - The catalytic characterization of the prepared gold nanoparticles in the oxidation of benzyl alcohol III. FTIR Spectrum (after calcination) IV. BET – Relative pressure vs. Volume BET Surface Area = m²/g Pore Volume = cc/g Pore Radius Dv(r) = Å V. Catalytic Properties in Benzyl alcohol oxidation I. Preparation of AuNPs -9.16mL of HAuCl4 dissolved in H 2 O to make a 150mL solution - Addition of 3% w/w sodium citrate, reflux for 30 minutes - 64mg of PVP dissolved in H 2 O added after reflux, stir for 24 hrs -Centrifugation II. Preparation of silica coating on AuNPs - 460mL of isopropanol, 66mL of H 2 O, 12.8mL of ammonia - Nanoparticles collected from centrifugation added to solution - Addition of 0.4mL of TEOS, mixture stirred vigorously for at least 8 hours - The silica coating is important in maintaining the AuNPs in nanoscale-sized. products at 550°C for 360 minutes (1°C/min) III. Prepartion of (oriented channels) g of CTAB in 150mL of water 150mL of ethanol, and 2.75mL of ammonia - Stir for 24 hours at room temperature - Centrifugation to obtain nanoparticles - Dry in oven at 80-85°C. Calcinate to eliminate organic side Nanoparticles, elements with the size of nm, have different properties and behaviors. For example, gold nanoparticles (AuNPs) are very reactive and can be used as catalysts. One problem with nanoparticles is to maintain their size in nanoscale in reactions. Benzyl alcohol is the most reactive reaction of alcohol. Due to the aromatic structure of benzyl, the dislocation of electrons is very easy to pull out the hydrogen from the -OH group, oxidizing the compound. All additional catalytic results are still pending. 1. Balasubramanian, Suresh K.; et all. Characterization, purification, and stability of gold nanparticles. Biomaterials Klitgaard, Soren.; et all. Aerobic oxidation of alcohols over gold catalysts: role of acid and base. Catal Lett Miedziak, Peter.; He, Qian.; et all. Oxidation of benzyl alcohol using supported gold-palladium nanoparticles. Catalysis Today The characterization results from FTIR, BET and UV-vis shows that the shape of the AuNPs with oriented channels are formed as expected. However, results on catalytic characterization are still pending. For future perspective, TGA, HPLC and GC can be used for more detailed characterization. 1h2h5h4h3h6h Interal diameter: 83.6nm External diameter: 192nm