Solvothermal synthesis and photocatalytic performance of Mn4+-doped anatase nanoplates with exposed {001} facets

Sofianou, MV; Tassi, M; Psycharis, V; Boukos, N; Thanos, S; Vaimakis, T; Yu, J; Trapalis, C

HERO ID

2841056

Reference Type

Journal Article

Year

2015

Language

English

HERO ID 2841056
In Press No
Year 2015
Title Solvothermal synthesis and photocatalytic performance of Mn4+-doped anatase nanoplates with exposed {001} facets
Authors Sofianou, MV; Tassi, M; Psycharis, V; Boukos, N; Thanos, S; Vaimakis, T; Yu, J; Trapalis, C
Journal Applied Catalysis B: Environmental
Volume 162
Page Numbers 27-33
Abstract The photocatalytic activity of TiO2 and manganese doped TiO2 nanoplates with various manganese atomic percentages, in the range of 2-7%, was studied. The undoped and doped nanoplates with exposed {001} facets were produced by a solvothermal method. The crystal structure as well as the shape of the TiO2 and Mn4+/TiO2 anatase nanoparticles was determined with X-ray powder diffraction (XRD) and transmission electron microscopy (TEM). Both techniques revealed that the nanocrystals are in the form of plates. Moreover, the anisotropic peak broadening of the X-ray diffraction patterns was studied using the Rietveld refining method. Chemical analysis of the photocatalyst that was carried out with X-ray photoelectron spectroscopy (XPS) showed the presence of manganese ions in the.TiO2 anatase matrix. The Density Functional Theory (OFT) calculations exhibited a decrease in the energy gap and an increase in the density of the electronic stated inside the gap for the doped TiO2 These observations were in agreement with the results of the UV visible diffuse reflectance spectroscopy (DRS) that demonstrated an adsorption shift towards the visible region for the same samples. <br> <br>The photocatalytic activity of the synthesized catalysts was investigated by the photocatalytic oxidation of the gaseous nitric oxide (NO) and decomposition of the gaseous acetaldehyde (CH3CHO) under visible light irradiation. The optimal concentration of dopant that improves the photocatalytic activity of the nanoplates was determined. (C) 2014 Elsevier B.V. All rights reserved.
Doi 10.1016/j.apcatb.2014.05.049
Wosid WOS:000343686900004
Url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84904098675&doi=10.1016%2fj.apcatb.2014.05.049&partnerID=40&md5=d7eb2d85755fb7c5bf7617e75da6c7c0
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English
Keyword Mn4+/TiO2; Anatase nanoplates; {001) facets; Photocatalysis; NO oxidation; Acetaldehyde decomposition
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