The effect of sulfur- and carbon-codoped TiO2 nanocomposite on the photocatalytic and mechanical properties of cement mortars

This study has established the impact of a nano-ТіО2 P25 modifier and a nanocomposite based on titanium dioxide, doped with sulfur and carbon dioxide (ТіО2/S,C), on the photocatalytic, mechanical properties and the structural formation of cement mortars. The paper reports the results of the particle...

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Main Authors: Marko Hohol, Myroslav Sanytsky, Tetiana Kropyvnytska, Adriana Barylyak, Yaroslav Bobitski
Format: Article
Language:English
Published: PC Technology Center 2020-08-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/210218
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spelling doaj-3570e930a1a4478e8e84a27820ca059b2020-11-25T02:00:22ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612020-08-0146 (106)61410.15587/1729-4061.2020.210218210218The effect of sulfur- and carbon-codoped TiO2 nanocomposite on the photocatalytic and mechanical properties of cement mortarsMarko Hohol0Myroslav Sanytsky1Tetiana Kropyvnytska2Adriana Barylyak3Yaroslav Bobitski4Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Danylo Halytsky Lviv National Medical University Pekarska str., 69, Lviv, Ukraine, 79010Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013This study has established the impact of a nano-ТіО2 P25 modifier and a nanocomposite based on titanium dioxide, doped with sulfur and carbon dioxide (ТіО2/S,C), on the photocatalytic, mechanical properties and the structural formation of cement mortars. The paper reports the results of the particle size distribution of the Portland composite cement and the ТіО2 nano additives; a comprehensive assessment of the particle size distribution has been performed both in terms of volume and specific surface. It has been proven that the ТіО2/S,C nanocomposite is characterized by the extremely high surface activity, which determines the photocatalytic properties of the surface of cement mortars. The comparison of the mechanical properties of cement mortars modified by titanium dioxide nano additives has been carried out. An experimental study has confirmed the improved photocatalytic properties of the cement mortar surface in the visible spectrum through the doping of the nano-sized titanium dioxide with carbon and sulfur. A combination of the ТіО2 nano additives and the superplasticizers of polycarboxylate type leads to the increased strength of the modified samples in proportion to a hardening age. Given the high surface activity of the ТіО2/S,C nanocomposite's particles, the cement paste hydration products deposit at their surface, thereby forming such conglomerates with them that seal the microstructure of the cement matrix. It has been shown that using a nanocomposite based on the modified titanium dioxide decreases the indicators of free energy while the surface of the cement mortar acquires hydrophobic properties, which contributes to the processes of self-cleaning. Thus, there is a reason to argue about the feasibility of using the ТіО2/S,C nanocomposite to improve the photocatalytic, self-cleaning, mechanical, and hydrophobic properties of cement mortarshttp://journals.uran.ua/eejet/article/view/210218nanocompositetitanium dioxidecement mortarphotocatalysishydrophobicityfree energy
collection DOAJ
language English
format Article
sources DOAJ
author Marko Hohol
Myroslav Sanytsky
Tetiana Kropyvnytska
Adriana Barylyak
Yaroslav Bobitski
spellingShingle Marko Hohol
Myroslav Sanytsky
Tetiana Kropyvnytska
Adriana Barylyak
Yaroslav Bobitski
The effect of sulfur- and carbon-codoped TiO2 nanocomposite on the photocatalytic and mechanical properties of cement mortars
Eastern-European Journal of Enterprise Technologies
nanocomposite
titanium dioxide
cement mortar
photocatalysis
hydrophobicity
free energy
author_facet Marko Hohol
Myroslav Sanytsky
Tetiana Kropyvnytska
Adriana Barylyak
Yaroslav Bobitski
author_sort Marko Hohol
title The effect of sulfur- and carbon-codoped TiO2 nanocomposite on the photocatalytic and mechanical properties of cement mortars
title_short The effect of sulfur- and carbon-codoped TiO2 nanocomposite on the photocatalytic and mechanical properties of cement mortars
title_full The effect of sulfur- and carbon-codoped TiO2 nanocomposite on the photocatalytic and mechanical properties of cement mortars
title_fullStr The effect of sulfur- and carbon-codoped TiO2 nanocomposite on the photocatalytic and mechanical properties of cement mortars
title_full_unstemmed The effect of sulfur- and carbon-codoped TiO2 nanocomposite on the photocatalytic and mechanical properties of cement mortars
title_sort effect of sulfur- and carbon-codoped tio2 nanocomposite on the photocatalytic and mechanical properties of cement mortars
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2020-08-01
description This study has established the impact of a nano-ТіО2 P25 modifier and a nanocomposite based on titanium dioxide, doped with sulfur and carbon dioxide (ТіО2/S,C), on the photocatalytic, mechanical properties and the structural formation of cement mortars. The paper reports the results of the particle size distribution of the Portland composite cement and the ТіО2 nano additives; a comprehensive assessment of the particle size distribution has been performed both in terms of volume and specific surface. It has been proven that the ТіО2/S,C nanocomposite is characterized by the extremely high surface activity, which determines the photocatalytic properties of the surface of cement mortars. The comparison of the mechanical properties of cement mortars modified by titanium dioxide nano additives has been carried out. An experimental study has confirmed the improved photocatalytic properties of the cement mortar surface in the visible spectrum through the doping of the nano-sized titanium dioxide with carbon and sulfur. A combination of the ТіО2 nano additives and the superplasticizers of polycarboxylate type leads to the increased strength of the modified samples in proportion to a hardening age. Given the high surface activity of the ТіО2/S,C nanocomposite's particles, the cement paste hydration products deposit at their surface, thereby forming such conglomerates with them that seal the microstructure of the cement matrix. It has been shown that using a nanocomposite based on the modified titanium dioxide decreases the indicators of free energy while the surface of the cement mortar acquires hydrophobic properties, which contributes to the processes of self-cleaning. Thus, there is a reason to argue about the feasibility of using the ТіО2/S,C nanocomposite to improve the photocatalytic, self-cleaning, mechanical, and hydrophobic properties of cement mortars
topic nanocomposite
titanium dioxide
cement mortar
photocatalysis
hydrophobicity
free energy
url http://journals.uran.ua/eejet/article/view/210218
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