Schuszter Gábor

Gábor Schuszter


Scientific publication

2024

41. Márk Olasz, Gábor Peintler, and Gábor Schuszter
Determination of Reaction Stoichiometry by Applying Job’s Method and Digital Image Processing for Precipitation Reactions
Journal of Chemical Education, 101, 3, 1280–1285 (2024) (IF=3.0) DOI: 10.1021/acs.jchemed.3c01306
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40. Norbert Német, Gábor Holló, Nadia Valletti, Szabolcs Farkas, Brigitta Dúzs, Ákos Kukovecz, Gábor Schuszter, István Szalai, Federico Rossi, and István Lagzi
Synthesis of zeolitic imidazolate framework-8 using an electric field in a gelled medium
Materials Advances, 5, 1199 (2024) (IF=5.36) DOI: 10.1039/d3ma00690e
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2023

39. Szabolcs Farkas, Ferenc Gazdag, Márton Detrich, Márton Mészáros, Gábor Holló, Gábor Schuszter, and István Lagzi
Formation of Precipitation Ellipsoidal Disks and Spheres in the Wake of a Planar Diffusion Front
The Journal of Physical Chemistry Letters, 14, 10382-10387 (2023) (IF=6.888) DOI: 10.1021/acs.jpclett.3c02295
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38. Kinga Bene, Edina Balog, and Gábor Schuszter
Synthesis and composition modification of precipitate tubes in a confined fl ow reactor
Physical Chemistry Chemical Physics, 25, 27293 - 27301 (2023) (IF=3.676) DOI: 10.1039/D3CP03467D
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37. Masaki Itatani, Norbert Német, Nadia Valletti, Gábor Schuszter, Prisco Prete, Pierandrea Lo Nostro, Raffaele Cucciniello, Federico Rossi, and István Lagzi
Synthesis of Zeolitic Imidazolate Framework-8 Using Glycerol Carbonate
ACS Sustainable Chem. Eng., 11, 35 13043-13049 (2023) (IF=9.224) DOI: 10.1021/acssuschemeng.3c02876
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36. Norbert Német, Hugh Shearer Lawson, Gábor Holló, Nadia Valletti, Federico Rossi, Gábor Schuszter, and István Lagzi
Non-autonomous zinc–methylimidazole oscillator and the formation of layered precipitation structures in a hydrogel
Scientific Reports, 13, 11029 (2023) (IF=4.996) DOI: 10.1038/s41598-023-37954-9
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2022

35. Yorgos Stergiou, Marcus J.B. Hauser, Anne De Wit, Gábor Schuszter, Dezső Horváth, Kerstin Eckert, and Karin Schwarzenberger
Chemical flowers: Buoyancy-driven instabilities under modulated gravity during a parabolic flight
Physical Review Fluids, 7, 110503 (2022) (IF=2.895) DOI: 10.1103/APS.DFD.2021.GFM.V0036
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34. Edina Balog, Gábor Varga, Ákos Kukovecz, Ágota Tóth, Dezső Horváth, István Lagzi, and Gábor Schuszter
Polymorph Selection of Zeolitic Imidazolate Frameworks via Kinetic and Thermodynamic Control
Crystal Growth & Design, 22, 7, 4268-4276 (2022) (IF= 4.076) DOI: 10.1021/acs.cgd.2c00265
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33. Szabolcs Farkas, Máté Sándor Fonyi, Gábor Holló, Norbert Német, Nadia Valletti, Ákos Kukovecz, Gábor Schuszter, Federico Rossi, and István Lagzi
Periodic Precipitation of Zeolitic Imidazolate Frameworks in a Gelled Medium
The Journal of Physical Chemistry C, 126, 22, 9580–9586 (2022) (IF= 4.126) DOI: 10.1021/acs.jpcc.2c02371
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32. Michael Emmanuel, Paszkál Papp, Gábor Schuszter, Ágota Deák, László Janovák, Ágota Tóth, Dezső Horváth
Nucleation Kinetics of Lithium Phosphate Precipitation
CrystEngComm, 24, 4447-4453 (2022) (IF=3.545) DOI: 10.1039/D2CE00333C
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31. Yorgos Stergiou, Marcus J.B. Hauser, Alessandro Comolli, Fabian Brau, Anne De Wit, Gábor Schuszter, Paszkál Papp, Dezső Horváth, Clément Roux, Véronique Pimienta, Kerstin Eckert, Karin Schwarzenberger
Effect of gravity modulation on the dynamics of a radial A+B->C reaction front
Chemical Engineering Science, 257, 117703 (2022) (IF=4.311) DOI: 10.1016/j.ces.2022.117703
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30. Norbert Német, Gábor Holló, Gábor Schuszter, Dezső Horváth, Ágota Tóth, Federico Rossi, István Lagzi
Application of a chemical clock in material design: chemically programmed synthesis of zeolitic imidazole framework-8
Chemical Communications, 58, 5777-5780 (2022) (IF=6.222) DOI: 10.1039/D2CC01139E
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29. Norbert Német, Ylenia Miele, Gábor Schuszter, Eszter L. Tóth, János Endre Maróti, Péter János Szabó, Federico Rossi, István Lagzi
Inhibition of the urea‑urease reaction by the components of the zeolite imidazole frameworks‑8 and the formation of urease‑zinc‑imidazole hybrid compound
Reaction Kinetics, Mechanisms and Catalysis, 135, 15-28 (2022) (IF=2.081) DOI: 10.1007/s11144-021-02139-w
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28. Brigitta Dúzs, Gábor Holló, Gábor Schuszter, Dezső Horváth, Ágota Tóth, István Szalai, István Lagzi
Synthesis of zeolitic imidazolate framework-8 and gold nanoparticles in a sustained out-of-equilibrium state
Scientific Reports, 12, 222 (2022) (IF=4.13) DOI: 10.1038/s41598-021-03942-0
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27. Adél Szerlauth, Edina Balog, Dóra Takács, Szilárd Sáringer, Gábor Varga, Gábor Schuszter, István Szilágyi
Self-assembly of delaminated layered double hydroxide nanosheets for the recovery of lamellar structure
Colloid and Interface Science Communications, 46, 100564 (2022) (IF= 4.914) DOI: 10.1016/j.colcom.2021.100564 (corresponding author)
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2021

26. Szabolcs Farkas, Gábor Holló, Gábor Schuszter, Ágota Deák, László Janovák, Viktória Hornok, Masaki Itatani, Hideki Nabika, Dezső Horváth, Ágota Tóth, and István Lagzi
Reaction–Diffusion Assisted Synthesis of Gold Nanoparticles: Route from the Spherical Nano-Sized Particles to Micrometer-Sized Plates
The Journal of Physical Chemistry C, 125, 47, 26116–26124 (2021) (IF= 4.126) DOI: 10.1021/acs.jpcc.1c08404
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25. Katalin Viktória Bere, Emilie Nez, Edina Balog, László Janovák, Dániel Sebők, Ákos Kukovecz, Clément Roux, Veronique Pimienta, Gábor Schuszter
Enhancing the yield of calcium carbonate precipitation by obstacles in laminar flow in a confined geometry
Physical Chemistry Chemical Physics, 23, 15515 - 15521 (2021)(IF= 3.430) DOI: 10.1039/D1CP01334C
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2020

24. Nirmali Prabha Das, Réka Zahorán, László Janovák, Ágota Deák, Ágota Tóth, Dezső Horváth, Gábor Schuszter
Kinetic Characterization of Precipitation Reactions: Possible Link between a Phenomenological Equation and Reaction Pathway
Crystal Growth & Design, 20, 11, 7392–7398 (2020) (IF= 4.089) DOI: 10.1021/acs.cgd.0c01061
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23. Edina Balog, Paszkál Papp, Ágota Tóth, Dezső Horváth, Gábor Schuszter
The impact of reaction rate on the formation of flow-driven confined precipitate patterns
Physical Chemistry Chemical Physics, 22, 13390-13397 (2020)(IF= 3.476) DOI: 10.1039/D0CP01036G
PCCP Emerging Investigators Themed Issue LINK

22. Ágota Tóth, Gábor Schuszter, Nirmali Prabha Das, Emese Lantos, Dezső Horváth, A. De Wit, Fabian Brau
Effects of radial injection and solution thickness on the dynamics of confined A + B → C chemical fronts
Physical Chemistry Chemical Physics, 22, 10278-10285 (2020)(IF= 3.476) DOI: 10.1039/C9CP06370F
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2019

21. Dóra Takács, Gábor Schuszter, Dániel Sebők, Ákos Kukovecz, Dezső Horváth, Ágota Tóth,
Magnetic-field-manipulated growth of flow-driven precipitate membrane tubes
Chemistry: A European Journal, accepted manuscript (2019)(IF=5.160) DOI: 10.1002/chem.201902830
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20. Réka Zahorán, Ákos Kukovecz, Ágota Tóth, Dezső Horváth, Gábor Schuszter,
High-speed tracking of fast chemical precipitations
Physical Chemistry Chemical Physics, 21, 11345-11350 (2019)(IF=3.906) DOI: 10.1039/c9cp01707k
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19. Edina Balog, Kevin Bittmann, Karin Schwarzenberger, Kerstin Eckert, Anne De Wit, Gábor Schuszter,
Influence of microscopic precipitate structures on macroscopic pattern formation in reactive flows in a confined geometry
Physical Chemistry Chemical Physics, 21, 2910-2918 (2019)(IF= 3.906) DOI: 10.1039/c8cp07693f
2019 HOT Physical Chemistry Chemical Physics article LINK

2018

18. Nirmali Prabha Das, Brigitta Müller, Ágota Tóth, Dezső Horváth, Gábor Schuszter,
Macroscale Precipitation Kinetics: Towards Complex Precipitate Structure Design
Physical Chemistry Chemical Physics, 20, 19768-19775 (2018) (IF= 4.123) DOI: 10.1039/C8CP01798K
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17. Éva Pópity-Tóth, Gábor Schuszter, Dezső Horváth and Ágota Tóth,
Peristalticity-driven banded chemical garden
The Journal of Chemical Physics 148, 184701 (2018) (IF=2.965) DOI: 10.1063/1.5023465 (FIRST AUTHOR)

16. Evelin Rauscher, Gábor Schuszter, Bíborka Bohner, Ágota Tóth and Dezso Horváth,
Osmotic contribution to the flow-driven tube formation of copper–phosphate and copper–silicate chemical gardens
Physical Chemistry Chemical Physics, 20, 5766 (2018) (IF=4.123) DOI: 10.1039/c7cp08282g
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2017

15. Gábor Schuszter, Tünde Gehér-Herczegh, Árpád Szűcs, Ágota Tóth, and Dezső Horváth,
Determination of the diffusion coefficient of hydrogen ion in hydrogels
Physical Chemistry Chemical Physics, 19, 12136-12143 (2017) (IF=4.123) DOI: 10.1039/C7CP00986K
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14. Fabian Brau, Gabor Schuszter, and Anne De Wit,
Flow Control of A + B → C Fronts by Radial Injection
Physical Review Letters 118, 134101 (2017) (IF=7.645) DOI: 10.1103/PhysRevLett.118.134101 (FIRST AUTHOR)

2016

13. Gabor Schuszter, and Anne De Wit,
Comparison of flow-controlled calcium and barium carbonate precipitation patterns
The Journal of Chemical Physics 145, 224201 (2016) (IF=2.894) DOI: 10.1063/1.4971286

12. Gabor Schuszter, Fabian Brau, and Anne De Wit,
Flow-driven control of calcium carbonate precipitation patterns in a confined geometry
Physical Chemistry Chemical Physics, 18, 25592 (2016) (IF=4.449) DOI: 10.1039/c6cp05067k

11. Gabor Schuszter, Fabian Brau, and Anne De Wit,
Calcium Carbonate Mineralization in a Confined Geometry
Environemental Science and Technology Letters, 3 (4), 156-159 (2016) (IF=4.839) DOI:10.1021/acs.estlett.6b00074

10. Eszter Toth-Szeles, Gabor Schuszter, Agota Toth, Zoltan Konya, and Dezso Horvath,
Flow-Driven Morphology Control in the Cobalt-Oxalate System
CrystEngComm, Volume 18, Number 12, 2057-2064 (2016) (IF=4.034) DOI:10.1039/C5CE02459E

2015

9. Biborka Bohner, Gabor Schuszter, Hideyuki Nakanashi, Daniel Zambo, Andras Deak, Dezso Horvath, Agota Toth, and Istvan Lagzi,
Self-assembly of charged nanoparticles by an autocatalytic reaction front
Langmuir, 31, 12019-12024 (2015) (IF=4.46) (FIRST AUTHOR)

8. Gabor Schuszter, Gabor Potari, Dezso Horvath, and Agota Toth,
Three-dimensional convection-driven fronts of exothermic chlorite-tetrathionate reaction
Chaos, 25, 064501 (2015) (IF=1.95)

7. Biborka Bohner, Gabor Schuszter, Dezso Horvath, Agota Toth,
Morphology control by flow-driven self-organizing precipitation
Chemical Physics Letters,631-632 , 114-117 (2015) (IF=1.991)

6. Gabor Schuszter, Erzsebet-Sara Bogya, Dezso Horvath, Agota Toth, Henrik Haspel, Akos Kukovecz,
Liquid droplet evaporation from buckypaper: On the fundamental properties of the evaporation profile
Microporous and Mesoporous Materials, 209, 105-112 (2015) (IF=3.209)

2014

5. Bíborka Bohner, Gábor Schuszter, Ottó Berkesi, Dezső Horváth and Ágota Tóth,
Self-organization of calcium oxalate by flow-driven precipitation
Chem. Commun. , 50, 4289-4291 (2014) (IF=6.378)

2013

4. Rica, T; Schuszter, G; Horváth, D; Tóth, Á,
Tuning density fingering by changing stoichiometry in the chlorite-tetrathionate reaction
Chemical Physics Letters, 585, 80-83 (2013) (IF=2.145)

2012

3. Schuszter, G; Horváth, D; Tóth, Á,
Convective instabilities of chemical fronts in close-packed porous media
Chemical Physics Letters, 546, 63-66 (2012) (IF=2.337)

2009

2. Schuszter, G; Tóth, T; Horváth, D; Tóth, Á,
Convective instabilities in horizontally propagating vertical chemical fronts
Physical Review E, 79, 016216 (2009) (IF=2.400)

1. Rongy, L; Schuszter, G; Sinko, Z; Tóth, T; Horváth, D; Tóth, Á; De Wit, A,
Influence of thermal effects on buoyancy-driven convection around autocatalytic chemical fronts propagating horizontally
Chaos, 19, 023110 (2009) (IF=1.795) (FIRST AUTHOR)