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Nano-titania photocatalyst loaded on W-MCM-41 support and its highly efficient degradation of methylene blue

  • University of Madras

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Most of the azo dyes produced in textile, printing, paper manufacturing, pulp processing and pharmaceutical industries contain different organic contaminants. These dyes can enter the body through ingestion and the high content in living systems can prove to be carcinogenic. Therefore photocatalytic degradation of such toxic organic compounds in water, in the presence of semiconductor powders has received much attention over the last two decades. Nanocrystalline titanium dioxide, TiO2, is a well studied and commonly used material for photocatalytic applications. However, the control of particle size, monodispersity, large catalytic surface for sufficient adsorption of organic pollutants, recovery and recycle of TiO2 nanoparticles are challenging tasks. Hence in the present study, titania was introduced into the nanopores (2-10 nm size) of MCM-41 to produce stable nanoparticles of uniform size and shape. Further, in order to lengthen the life time of the excited electrons/holes during photoreaction, tungsten atoms were incorporated in to the MCM-41 silica matrix in addition to titania loading.

Original languageEnglish
Title of host publicationSolid State Physics - Proceedings of the 55th DAE Solid State Physics Symposium 2010
Pages327-328
Number of pages2
EditionPART A
DOIs
StatePublished - 2011
Externally publishedYes
Event55th DAE Solid State Physics Symposium 2010 - Manipal, India
Duration: 26 Dec 201030 Dec 2010

Publication series

NameAIP Conference Proceedings
NumberPART A
Volume1349
ISSN (Print)0094-243X
ISSN (Electronic)1551-7616

Conference

Conference55th DAE Solid State Physics Symposium 2010
Country/TerritoryIndia
CityManipal
Period26/12/1030/12/10

Keywords

  • catalytic methods
  • environmental aspects
  • molecular sieves
  • nanotubes
  • porous materials
  • UV light

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