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C-doped anatase TiO2: Adsorption kinetics and photocatalytic degradation of methylene blue and phenol, and correlations with DFT estimations.
Matos, Juan; Ocares-Riquelme, José; Poon, Po S; Montaña, Ricmary; García, Ximena; Campos, Kilver; Hernández-Garrido, Juan C; Titirici, Maria M.
Afiliação
  • Matos J; Hyb&Car Group, Biorefinery Department, Technological Development Unit, University of Concepcion, Av. Cordillera, 2634, Parque Industrial Coronel, Coronel, Chile; Millennium Nuclei on Catalytic Processes Towards Sustainable Chemistry (CSC), Chile. Electronic address: j.matos@udt.cl.
  • Ocares-Riquelme J; Hyb&Car Group, Biorefinery Department, Technological Development Unit, University of Concepcion, Av. Cordillera, 2634, Parque Industrial Coronel, Coronel, Chile; Department of Chemical Engineering, University of Concepcion, Barrio Universitario s/n, Edmundo Larenas, Concepcion, Chile.
  • Poon PS; Hyb&Car Group, Biorefinery Department, Technological Development Unit, University of Concepcion, Av. Cordillera, 2634, Parque Industrial Coronel, Coronel, Chile.
  • Montaña R; Hyb&Car Group, Biorefinery Department, Technological Development Unit, University of Concepcion, Av. Cordillera, 2634, Parque Industrial Coronel, Coronel, Chile.
  • García X; Department of Chemical Engineering, University of Concepcion, Barrio Universitario s/n, Edmundo Larenas, Concepcion, Chile.
  • Campos K; Centre of Physics, Venezuelan Institute for Scientific Research, Km. 11, Pan-American Road, Caracas, Venezuela.
  • Hernández-Garrido JC; Department of Materials Science and Metallurgy Engineering and Inorganic Chemistry, Faculty of Sciences, University of Cadiz, Puerto Real, Cadiz, Spain.
  • Titirici MM; Queen Mary University of London, School of Engineering and Materials Science, Mile End Road, E14NS London, United Kingdom.
J Colloid Interface Sci ; 547: 14-29, 2019 Jul 01.
Article em En | MEDLINE | ID: mdl-30933690
ABSTRACT
This work shows an easy and eco-friendly methodology to obtain almost pristine anatase phase of TiO2 by using furfural, a biomass-derived molecule, as a bio-template. The photocatalytic activity was studied following the degradation of methylene blue and phenol under artificial solar irradiation. Results were compared against those obtained on a commercial pristine anatase TiO2. The pseudo first-order, the second-order and the intraparticle diffusion kinetic models were verified. The textural and surface chemistry properties of the materials were correlated with the surface density of molecules adsorbed in equilibrium. The reaction-rate showed an almost perfect quadratic regression as a function of the surface density. Theoretical estimations of the density of states by DFT + U were performed showing that the total electron charge in the oxygen bonded to anatase TiO2 increased due to carbon doping in agreement with the prediction of appearance of atomic orbitals 2p from carbon atom in the hybrid material. C-doping is responsible of the red-shift from 3.14 to 2.94 eV observed for a Ti15O32C super-cell than pristine anatase Ti16O32. The increase in the activity of the C-doped TiO2 photocatalyst was due to the decrease in the energy band-gap promoting a higher absorption of photons from the visible light.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article