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Tóth-Győri Enikő

Tóth-Győri Enikő

Publication list

2022
1.
Győri, E., Kecskeméti, Á., Fábián, I., Szarka, M., Lázár, I.: Environment-Friendly Catalytic Mineralization of Phenol and Chlorophenols with Cu- and Fe- Tetrakis(4-aminophenyl)-porphyrin-Silica Hybrid Aerogels.
Gels. 8 (4), 1-20, (article identifier: 202), 2022.
Journal metrics:
Q3 Biomaterials
Q3 Bioengineering
Q2 Organic Chemistry
Q2 Polymers and Plastics
2.
Hegedűs, C., Czibulya, Z., Tóth, F., Dezső, B., Hegedűs, V., Boda, R., Horváth, D., Csik, A., Fábián, I., Győri, E., Sajtos, Z., Lázár, I.: The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells.
Biomedicines. 10 (3), 1-17, (article identifier: 662), 2022.
Journal metrics:
Q2 Biochemistry, Genetics and Molecular Biology (miscellaneous)
Q1 Medicine (miscellaneous)
2020
3.
Hegedűs, V., Kerényi, F., Boda, R., Horváth, D., Lázár, I., Győri, E., Dezső, B., Hegedűs, C.: β-Tricalcium phosphate-silica aerogel as an alternative bioactive ceramic for the potential use in dentistry.
Adv. Appl. Ceram. 119 (5-6), 364-371, 2020.
2019
4.
Torres-Rodríguez, J., Kalmár, J., Menelaou, M., Čelko, L., Dvořak, K., Cihlář, J., Cihlář, J., Kaiser, J., Győri, E., Veres, P., Fábián, I., Lázár, I.: Heat treatment induced phase transformations in zirconia and yttria-stabilized zirconia monolithic aerogels.
J. Supercrit. Fluids. 149, 54-63, 2019.
Journal metrics:
Q1 Chemical Engineering (miscellaneous)
Q1 Condensed Matter Physics
Q1 Physical and Theoretical Chemistry
5.
Győri, E., Varga, A., Fábián, I., Lázár, I.: Supercritical CO2 extraction and selective adsorption of aroma materials of selected spice plants in functionalized silica aerogels.
J. Supercrit. Fluids. 148, 16-23, 2019.
Journal metrics:
Q1 Chemical Engineering (miscellaneous)
Q1 Condensed Matter Physics
Q1 Physical and Theoretical Chemistry
2018
6.
Hegedűs, V., Kerényi, F., Boda, R., Horváth, D., Lázár, I., Győri, E., Dezső, B., Hegedűs, C.: β-Tricalcium phosphate silica aerogel as an alternative bioactive ceramic for the potential use in dentistry.
Adv. Appl. Ceram. 117 (8), 476-484, 2018.
Journal metrics:
Q2 Ceramics and Composites
Q2 Industrial and Manufacturing Engineering
2017
7.
Győri, E., Fábián, I., Lázár, I.: Effect of the Chemical Composition of Simulated Body Fluids on Aerogel-Based Bioactive Composites.
J. Compos. Sci. 1 (2), 1-12, (article identifier: 15), 2017.
2015
8.
Lázár, I., Kuttor, A., Győri, E., Veres, P., Fábián, I., Manó, S., Hegedűs, C.: Fogászatban alkalmazható aerogél alapú bioaktív anyagok előállítása és sajátosságai.
Fogorv. Szle. 108 (1), 3-8, 2015.
Journal metrics:
Q4 Medicine (miscellaneous)
9.
Lázár, I., Kalmár, J., Anca, P., Szilágyi, A., Győri, E., Ditrói, T., Fábián, I.: Photocatalytic performance of highly amorphous titania-silica aerogels with mesopores: the adverse effect of the in situ adsorption of some organic substrates during photodegradation.
Appl. Surf. Sci. 356, 521-531, 2015.
Journal metrics:
Q1 Surfaces, Coatings and Films
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