Vice to virtue: intracellular biogenic nanoparticles for the generation of carbon supported catalysts

Vijayakumar, P. S. ; Selvakumar, S. ; Gholap, R. S. ; Singh, A. P. ; Prasad, B. L. V. (2010) Vice to virtue: intracellular biogenic nanoparticles for the generation of carbon supported catalysts Journal of Nanoscience and Nanotechnology, 10 (2). pp. 905-911. ISSN 1533-4880

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Official URL: http://www.ingentaconnect.com/content/asp/jnn/2010...

Related URL: http://dx.doi.org/10.1166/jnn.2010.1894

Abstract

Intracellular biogenic nanoparticles are considered disadvantageous as the separation of the nanoparticles from the biomass becomes intricate. However realizing the importance of carbon supported catalyst for many important organic reactions we envisaged these nanoparticles as a source for carbon supported catalyst. Herein we demonstrate the heat treatment of intracellular biogenic nanoparticles under inert atmosphere as an efficient method for the preparation of carbon supported metal oxide catalysts. Aspergillus ochraceus, a fungus isolated from foundries, on incubation with K2TiF6 led to the synthesis of intracellular titanium oxide nanoparticles. The nanoparticles embedded biomass upon heat treatment at 600°C in a nitrogen environment gave titanium oxide nanoparticles implanted in a carbonaceous matrix. The material thus formed was characterized using FTIR spectroscopy, Raman spectroscopy, HRTEM and X-ray diffraction. Appreciable benzaldehyde selectivity was observed when styrene oxidation was carried out over such immobilized catalysts. The conversion rate was determined to be 76% and the benzaldehyde selectivity was greater than 80%.

Item Type:Article
Source:Copyright of this article belongs to American Scientific Publishers.
Keywords:Benzaldehyde Selectivity; Biosynthesis; Carbon Supported Titania; Nanoparticles; Styrene Oxidation
ID Code:105403
Deposited On:01 Feb 2018 17:13
Last Modified:01 Feb 2018 17:13

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