Influence of boron doping on characteristics of glucose-based hydrothermal carbons

In this study, the influence of boron doping on structural and surface properties of carbon material synthesized by a hydrothermal method was investigated, and the obtained results were compared with the previously published influence that boron has on characteristics of carbonized boron-doped hydro...

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Main Authors: Kalijadis Ana M., Maletić Marina M., Bjelajac Anđelika Z., Babić Biljana M., Minović-Arsić Tamara Z., Vukčević Marija M.
Format: Article
Language:English
Published: Serbian Chemical Society 2022-01-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0352-5139/2022/0352-51392200001K.pdf
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author Kalijadis Ana M.
Maletić Marina M.
Bjelajac Anđelika Z.
Babić Biljana M.
Minović-Arsić Tamara Z.
Vukčević Marija M.
author_facet Kalijadis Ana M.
Maletić Marina M.
Bjelajac Anđelika Z.
Babić Biljana M.
Minović-Arsić Tamara Z.
Vukčević Marija M.
author_sort Kalijadis Ana M.
collection DOAJ
description In this study, the influence of boron doping on structural and surface properties of carbon material synthesized by a hydrothermal method was investigated, and the obtained results were compared with the previously published influence that boron has on characteristics of carbonized boron-doped hydrothermal carbons (CHTCB). Hydrothermal carbons doped with boron (HTCB) were obtained by the hydrothermal synthesis of glucose solutions with different nominal concentrations of boric acid. It was found that glucose based hydrothermal carbon does not have developed porosity, and the presence of boron in their structure has insignificant influence on it. On the contrary, additional carbonization increases the specific surface area of the undoped sample, while an increase in boron content drastically decreases the specific surface area. Boron doping leads to a decrease in the amount of surface oxygen groups, for both, hydrothermally synthesized and additionally carbonized materials. Raman analysis showed that the boron content does not affect a structural arrangement of the HTCB samples, and Raman structural parameters show a higher degree of disorder, compared to the CHTCB samples. Comparison of structural and surface characteristics of hydrothermal carbons and carbonized materials contributes to the study of the so far, insufficiently clarified influence that boron incorporation has on the material characteristics.
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spelling doaj.art-b037e92dc49d4f998506c027ac2586d12022-12-22T02:49:56ZengSerbian Chemical SocietyJournal of the Serbian Chemical Society0352-51391820-74212022-01-0187674976010.2298/JSC211011001K0352-51392200001KInfluence of boron doping on characteristics of glucose-based hydrothermal carbonsKalijadis Ana M.0https://orcid.org/0000-0002-6897-4691Maletić Marina M.1https://orcid.org/0000-0002-4112-9316Bjelajac Anđelika Z.2https://orcid.org/0000-0001-5893-156XBabić Biljana M.3https://orcid.org/0000-0002-6269-7822Minović-Arsić Tamara Z.4https://orcid.org/0000-0002-2957-5372Vukčević Marija M.5https://orcid.org/0000-0003-0416-0741Department of Materials „Vinča” Institute of Nuclear Sciences, National Institute of thе Republic of Serbia, University of Belgrade, Belgrade, SerbiaInnovation Center of the Faculty of Technology and Metallurgy, Belgrade, SerbiaInnovation Center of the Faculty of Technology and Metallurgy, Belgrade, Serbia + C2N - Centre for Nanoscience and Nano-technology Universite Paris-Saclay, Palaiseau, FranceInstitute of Physics, National Institute of thе Republic of Serbia, University of Belgrade, Belgrade, SerbiaDepartment of Materials „Vinča” Institute of Nuclear Sciences, National Institute of thе Republic of Serbia, University of Belgrade, Belgrade, SerbiaFaculty of Technology and Metallurgy, University of Belgrade, Belgrade, SerbiaIn this study, the influence of boron doping on structural and surface properties of carbon material synthesized by a hydrothermal method was investigated, and the obtained results were compared with the previously published influence that boron has on characteristics of carbonized boron-doped hydrothermal carbons (CHTCB). Hydrothermal carbons doped with boron (HTCB) were obtained by the hydrothermal synthesis of glucose solutions with different nominal concentrations of boric acid. It was found that glucose based hydrothermal carbon does not have developed porosity, and the presence of boron in their structure has insignificant influence on it. On the contrary, additional carbonization increases the specific surface area of the undoped sample, while an increase in boron content drastically decreases the specific surface area. Boron doping leads to a decrease in the amount of surface oxygen groups, for both, hydrothermally synthesized and additionally carbonized materials. Raman analysis showed that the boron content does not affect a structural arrangement of the HTCB samples, and Raman structural parameters show a higher degree of disorder, compared to the CHTCB samples. Comparison of structural and surface characteristics of hydrothermal carbons and carbonized materials contributes to the study of the so far, insufficiently clarified influence that boron incorporation has on the material characteristics.http://www.doiserbia.nb.rs/img/doi/0352-5139/2022/0352-51392200001K.pdfhydrothermal synthesisboric acidraman analysisspecific surface areasurface oxygen groups
spellingShingle Kalijadis Ana M.
Maletić Marina M.
Bjelajac Anđelika Z.
Babić Biljana M.
Minović-Arsić Tamara Z.
Vukčević Marija M.
Influence of boron doping on characteristics of glucose-based hydrothermal carbons
Journal of the Serbian Chemical Society
hydrothermal synthesis
boric acid
raman analysis
specific surface area
surface oxygen groups
title Influence of boron doping on characteristics of glucose-based hydrothermal carbons
title_full Influence of boron doping on characteristics of glucose-based hydrothermal carbons
title_fullStr Influence of boron doping on characteristics of glucose-based hydrothermal carbons
title_full_unstemmed Influence of boron doping on characteristics of glucose-based hydrothermal carbons
title_short Influence of boron doping on characteristics of glucose-based hydrothermal carbons
title_sort influence of boron doping on characteristics of glucose based hydrothermal carbons
topic hydrothermal synthesis
boric acid
raman analysis
specific surface area
surface oxygen groups
url http://www.doiserbia.nb.rs/img/doi/0352-5139/2022/0352-51392200001K.pdf
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AT bjelajacanđelikaz influenceofborondopingoncharacteristicsofglucosebasedhydrothermalcarbons
AT babicbiljanam influenceofborondopingoncharacteristicsofglucosebasedhydrothermalcarbons
AT minovicarsictamaraz influenceofborondopingoncharacteristicsofglucosebasedhydrothermalcarbons
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