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Synthesis and Characterization of N-Doped Porous TiO(2) Hollow Spheres and Their Photocatalytic and Optical Properties

Three kinds of N-doped mesoporous TiO(2) hollow spheres with different N-doping contents, surface area, and pore size distributions were prepared based on a sol–gel synthesis and combined with a calcination process. Melamine formaldehyde (MF) microspheres have been used as sacrificial template and c...

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Autores principales: Li, Hongliang, Liu, Hui, Fu, Aiping, Wu, Guanglei, Xu, Man, Pang, Guangsheng, Guo, Peizhi, Liu, Jingquan, Zhao, Xiu Song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5456619/
https://www.ncbi.nlm.nih.gov/pubmed/28773967
http://dx.doi.org/10.3390/ma9100849
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author Li, Hongliang
Liu, Hui
Fu, Aiping
Wu, Guanglei
Xu, Man
Pang, Guangsheng
Guo, Peizhi
Liu, Jingquan
Zhao, Xiu Song
author_facet Li, Hongliang
Liu, Hui
Fu, Aiping
Wu, Guanglei
Xu, Man
Pang, Guangsheng
Guo, Peizhi
Liu, Jingquan
Zhao, Xiu Song
author_sort Li, Hongliang
collection PubMed
description Three kinds of N-doped mesoporous TiO(2) hollow spheres with different N-doping contents, surface area, and pore size distributions were prepared based on a sol–gel synthesis and combined with a calcination process. Melamine formaldehyde (MF) microspheres have been used as sacrificial template and cetyltrimethyl ammonium bromide (CTAB) or polyvinylpyrrolidone (PVP) was selected as pore-directing agent. Core–shell intermediate spheres of titania-coated MF with diameters of 1.2–1.6 μm were fabricated by varying the volume concentration of TiO(2) precursor from 1 to 3 vol %. By calcining the core–shell composite spheres at 500 °C for 3 h in air, an in situ N-doping process occurred upon the decomposition of the MF template and CTAB or PVP pore-directing surfactant. N-doped mesoporous TiO(2) hollow spheres with sizes in the range of 0.4–1.2 μm and shell thickness from 40 to 110 nm were obtained. The composition and N-doping content, thermal stability, morphology, surface area and pore size distribution, wall thickness, photocatalytic activities, and optical properties of the mesoporous TiO(2) hollow spheres derived from different conditions were investigated and compared based on Fourier-transformation infrared (FTIR), SEM, TEM, thermogravimetric analysis (TGA), nitrogen adsorption–desorption, and UV–vis spectrophotoscopy techniques. The influences of particle size, N-doping, porous, and hollow characteristics of the TiO(2) hollow spheres on their photocatalytic activities and optical properties have been studied and discussed based on the composition analysis, structure characterization, and optical property investigation of these hollow spherical TiO(2) matrices.
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spelling pubmed-54566192017-07-28 Synthesis and Characterization of N-Doped Porous TiO(2) Hollow Spheres and Their Photocatalytic and Optical Properties Li, Hongliang Liu, Hui Fu, Aiping Wu, Guanglei Xu, Man Pang, Guangsheng Guo, Peizhi Liu, Jingquan Zhao, Xiu Song Materials (Basel) Article Three kinds of N-doped mesoporous TiO(2) hollow spheres with different N-doping contents, surface area, and pore size distributions were prepared based on a sol–gel synthesis and combined with a calcination process. Melamine formaldehyde (MF) microspheres have been used as sacrificial template and cetyltrimethyl ammonium bromide (CTAB) or polyvinylpyrrolidone (PVP) was selected as pore-directing agent. Core–shell intermediate spheres of titania-coated MF with diameters of 1.2–1.6 μm were fabricated by varying the volume concentration of TiO(2) precursor from 1 to 3 vol %. By calcining the core–shell composite spheres at 500 °C for 3 h in air, an in situ N-doping process occurred upon the decomposition of the MF template and CTAB or PVP pore-directing surfactant. N-doped mesoporous TiO(2) hollow spheres with sizes in the range of 0.4–1.2 μm and shell thickness from 40 to 110 nm were obtained. The composition and N-doping content, thermal stability, morphology, surface area and pore size distribution, wall thickness, photocatalytic activities, and optical properties of the mesoporous TiO(2) hollow spheres derived from different conditions were investigated and compared based on Fourier-transformation infrared (FTIR), SEM, TEM, thermogravimetric analysis (TGA), nitrogen adsorption–desorption, and UV–vis spectrophotoscopy techniques. The influences of particle size, N-doping, porous, and hollow characteristics of the TiO(2) hollow spheres on their photocatalytic activities and optical properties have been studied and discussed based on the composition analysis, structure characterization, and optical property investigation of these hollow spherical TiO(2) matrices. MDPI 2016-10-19 /pmc/articles/PMC5456619/ /pubmed/28773967 http://dx.doi.org/10.3390/ma9100849 Text en © 2016 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Hongliang
Liu, Hui
Fu, Aiping
Wu, Guanglei
Xu, Man
Pang, Guangsheng
Guo, Peizhi
Liu, Jingquan
Zhao, Xiu Song
Synthesis and Characterization of N-Doped Porous TiO(2) Hollow Spheres and Their Photocatalytic and Optical Properties
title Synthesis and Characterization of N-Doped Porous TiO(2) Hollow Spheres and Their Photocatalytic and Optical Properties
title_full Synthesis and Characterization of N-Doped Porous TiO(2) Hollow Spheres and Their Photocatalytic and Optical Properties
title_fullStr Synthesis and Characterization of N-Doped Porous TiO(2) Hollow Spheres and Their Photocatalytic and Optical Properties
title_full_unstemmed Synthesis and Characterization of N-Doped Porous TiO(2) Hollow Spheres and Their Photocatalytic and Optical Properties
title_short Synthesis and Characterization of N-Doped Porous TiO(2) Hollow Spheres and Their Photocatalytic and Optical Properties
title_sort synthesis and characterization of n-doped porous tio(2) hollow spheres and their photocatalytic and optical properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5456619/
https://www.ncbi.nlm.nih.gov/pubmed/28773967
http://dx.doi.org/10.3390/ma9100849
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