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56.

Gáspár, V.; Tóth, J.: Reaction extent or advancement of reaction: A definition for complex chemical reactions

Chaos, 2023, 33, Art. No. 043141, Abstract, doi:10.1063/5.0130349

 

55.

Hankins, M. J.; T.; Gáspár, V.; Kiss, I. Z.: Abrupt and gradual onset of synchronized oscillations due to dynamical quorum sensing in the single-cathode multi anode nickel electrodissolution system.
Chaos, 2019, 29, Art. No. 033114, Abstract, doi:10.1063/1.5087405, pdf

 

54.

Nagy, T.; Verner, E.; Gáspár, V.; Kori, H.; Kiss, I.: Delayed feedback induced multirhythmicity in the oscillatory electrodissolution of copper
Chaos, 2015, 25, Art. No. 064608, Abstract, doi:10.1063/1.4921694, pdf

 

53.

Bîrzu, A.; Gáspár, V.:Complex spatio-temporal dynamics in metal electrodissolution: three dimensional cell geometry models,
J. Comput. Interd. Sci., 2012, 3, 87-98., Abstract, doi:10.6062/jcis.2012.03.02.0054, pdf

 

52.

Úrvölgyi, M.; Gáspár, V.; Nagy, T.; Kiss, I. Z.: Quantitative dynamical relationships for the effect of rotation rate on frequency and waveform of electrochemical oscillations,
Chem. Eng. Sci.
, 2012, 83, 56-65, Abstract, doi:10.1016/j.ces.2011.10.073,
pdf

 

E1.

 Gáspár, V.: Doktori képzés a Debreceni Egyetem Kémia Doktori Iskolájában

Magyar Kémiai Folyóirat, 2011, 117, 147-152., pdf

 

B1.

Kiss, I.; Nagy, T.; Gáspár, V: Dynamical Instabilities in Electrochemical Processes,

Handbook of Solid State Electrochemistry, Vol. 2, pp. 125-178. ISBN-10: 3-527-32638-3., 2011

 

51.

Gáspár, V.; Field, R. J.: Comment onSimple KBrO3, H2SO4 Batch Oscillator”
J. Phys. Chem. A
, 2009, 113, 7979-7980, Abstract, pdf

 

50.

Kiss, I. Z.; Kazsu, Z.; Gáspár, V.: Scaling Relationship for Oscillating Electrochemical Systems: Dependence of Phase Diagram on Electrode Size and Rotation Rate
Phys. Chem. Chem. Phys., 2009, 11, 7669–7677, Abstract, pdf

 

49.

Bîrzu, A.; Gáspár, V.: Synchronization of electrochemical oscillators of S-NDR type,
Electrochimica Acta, 2009, 55, 383-394, Abstract, pdf

 

48.

Kiss, I. Z.; Kazsu, Z.; Gáspár, V.: Tracking Unstable Steady States and Periodic Orbits of Oscillatory and Chaotic Electrochemical Systems Using Delayed Feedback Control, CHAOS, 2006, 16, 033109, Abstract, pdf

 

47.

Kiss, I. Z.; Kazsu, Z.; Gáspár, V.: Experimental Strategy for Characterization of Essential Dynamical Variables in Oscillatory Systems: Effect of Double-layer Capacitance on the Stability of Electrochemical Oscillators, J. Phys. Chem. A, 2005, 109, 9521-9527. Abstract, pdf

 

46.

Armstrong, G. R.; Taylor, A.; Scott, S.K.; Gáspár, V.: Modelling wave propagation across a series of gaps, Phys. Chem. Chem. Phys., 2004, 6, 4677-4681, Abstract, pdf

 

45.

Kheowan, O.-U.; Kantrasiri, S.; Uthaisar, C.; Gáspár, V.; Müller, S.C.: Spiral Wave Dynamics Controlled by a Square–Shape Sensory Domain Chem. Phys. Letters, 2004, 389, 140-144, Abstract, pdf

 

44.

Bamforth, J. R.; Tóth, R.; Gáspár, V.; Scott, S. K.: Scaling and Dynamics of "Flow Distributed Oscillation Patterns" in the Belousov-Zhabotinsky reaction, Phys. Chem. Chem. Phys., 2002, 4, 1299-1306, Abstract, pdf

 

43.

Kheowan, O.-U.; Gáspár, V.; Zykov, V.S.; Müller, S.C.:Measurements of kinematical parameters of spiral waves in media of low excitability, Phys. Chem. Chem. Phys., 2001, 3, 4747-4752, Abstractpdf

 

42.

Bamforth, J.R.; Merkin, J.H.; Scott, S.K.; Tóth, R.; Gáspár, V.: Flow-distributed oscillation patterns in the Oregonator model, Phys. Chem. Chem. Phys., 2001, 3, 1435-1438, Abstractpdf

 

41.

Tóth, R.; Papp, A.; Gáspár, V.; Merkin, J.; Scott, S. K.; Taylor, A.: Flow-driven instabilities in the Belousov-Zhabotinsky reaction: modelling and experiments, Phys. Chem. Chem. Phys., 2001, 3, 957-964. Abstract, pdf

 

40.

Rivera, M.; Madrigal, R.; Parmananda, P.; Eiswirth, M.; Nyikos, L.; Kiss, I. Z.; Gáspár, V.: Numerical analysis of spatio-temporal chaos in spatially extended systems and research on chaotic electrodissolution of metals, Rev. Mex. Fis.,2000, 46, 11-15. Abstract, pdf

 

39.

Parmananda, P.; Madrigal, R.; Rivera, M.; Kiss, I .Z.; Gáspár, V.: Resonant Control of Electrochemical Oscillations, J. Phys. Chem. B, 2000, 104, 11748-11751. Abstract, pdf

 

38.

Davies, M. L; Halford-Maw, P. A.; Hill, J.; Tinsley, M. R.; Johnson, B. R.; Scott, S. K.; Kiss, I. Z.; Gáspár, V.: Control of Chaos in Combustion Reactions, J. Phys. Chem. A., 2000, 104, 9944-9952., Abstractpdf

 

37.

Kiss, I. Z.; Gáspár, V.: Controlling Chaos with Artificial Neural Network: Numerical Studies and Experiments,J. Phys. Chem. A, 2000, 104, 8033-8037., Abstract, pdf

 

36.

Kiss, I .Z.; Gáspár, V.; Hudson, J .L.: Experiments on Synchronization and Control of Chaos on Coupled Electrochemical Oscillators,
J. Phys. Chem. B, 2000, 104, 7554-7560., Abstractpdf

 

35.

Tóth, R.; Gáspár, V.; Belmonte, A.; O'Connell, M. C.; Taylor, A.; Scott, S .K.: Wave Initiation in the Ferroin-Catalysed Belousov-Zhabotinsky Reaction with Visible Light, Phys. Chem. Chem. Phys., 2000, 2, 413-416., Abstract, pdf

 

34.

Taylor, A .F.; Gáspár, V.; Johnson, B. R.; Scott, S. K.: Analysis of Reaction-Diffusion Waves  in the Ferroin-Catalysed Belousov-Zhabotinsky Reaction, Phys. Chem. Chem. Phys., 1999, 1, 4595-4599., Abstract, pdf

 

33.

Parmananda, P.; Madrigal, R.; Rivera, M.; Nyikos, L.; Kiss, I. Z.; Gáspár, V.: Stabilization of unstable steady states and periodic orbits in an electrochemical system using delayed-feedback control, Phys. Rev. E, 1999, 59, 5266-5271., Abstract, pdf

 

32.

Flesselles, J.-M.; Belmonte, A., Gáspár, V.: Dispersion Relation for Waves in the Belousov-Zhabotinsky Reaction, J. Chem. Soc. Faraday Trans., 1998, 94, 851-855., Abstract, pdf

 

31.

Kiss, I. Z.; Gáspár, V.; Nyikos, L.: Stability Analyis of the Oscillatory Electrodissolution of Copper with Impedance Spectroscopy, J. Phys. Chem. A, 1998, 102, 909-914., Abstractpdf

 

30.

Kiss, I. Z ; Gáspár, V.; Nyikos, L.; Parmananda, P.: Controlling Electrochemical Chaos in the Copper-Phosphoric Acid System, J. Phys. Chem. A, 1997, 101, 8668-8674., Abstract, pdf

 

29.

Volford, A.; Wittmann, M.; Marlovits, G.; Noszticzius, Z.; Gáspár, V.: Platinum as a Chlorine Dioxide/Chlorite Redox Electrode in ClO2 Based Oscillating Reactions and a New Semibatch Oscillator: the ClO2-Acetone System with I- Inflow, J. Phys. Chem. B, 1997, 101, 3720-3726., Abstract, pdf

 

28.

Dajka, J.; Károly, T.; Nagy, I.; Gáspár, V.; Noszticzius, Z.: Transition between Circular Fronts and Spiral Waves in Marginally Excitable Media, J. Chem. Soc. Faraday Trans., 1996, 92, 2897-2901., Abstract, pdf

 

27.

Kiss, I. Z.; Gáspár, V.: Predicting the Dynamics of an Oligo-oscillatory Reaction by an Artificial Neural Network, ACH-Models in Chemistry, 1995, 132, 887-901., Abstract, pdf

 

26.

Marlovits, G.; Wittmann, M.; Noszticzius, Z.; Gáspár, V.: A New Chemical Oscillator in a Novel Open Reactor: the ClO2-I2 Acetone System in a Membrane-Fed Stirred Tank Reactor, J. Phys. Chem.1995, 99, 5359-5364., Abstract, pdf

 

25.

Tóth, Á.; Gáspár, V.; Showalter, K.: Propagation of Chemical Waves through Capillary Tubes, J. Phys. Chem., 1994, 98, 522-531., Abstract, pdf

 

24.

Petrov, V.; Gáspár, V.; Masere, J.; Showalter, K.: Controlling chaos in the Belousov-Zhabotinsky reaction, Nature,1993, 361, 240-243., Abstract, pdf

 

23.

Kéki, S.; Magyar, I.; Beck, M. T.; Gáspár, V.: Modeling the Oscillatory Bromate Oxidation of Ferroin in Open Systems, J. Phys. Chem., 1992, 96, 1725-1729., Abstract, pdf

 

22.

Gáspár, V.; Maselko, J.; Showalter, K.: Transverse Coupling of Chemical Waves, Chaos, 1991, 1, 435-444., Abstract, pdf

 

21.

Peng, B; Gáspár, V.; Showalter, K.: False Bifurcations in Chemical Systems: Canards, Phil. Trans. R. Soc. Lond. A, 1991, 337, 275-289., Abstract, pdf

 

20.

Winston, D.; Arora, M.; Maselko, J.; Gáspár, V.; Showalter, K.: Cross membrane coupling of spatiotemporal patterns, Nature, 1991, 351, 132-135., Abstract, pdf

 

19.

Gáspár, V.; Showalter, K.: A Simple Model for the Oscillatory Iodate Oxidation of Sulfite and Ferrocyanide, J. Phys. Chem., 1990, 94, 4973-4979., Abstract, pdf

 

18.

Gáspár, V.; Showalter, K.: Period lengthening and associated bifurcations in a two-variable flow Oregonator, J. Chem. Phys., 1988, 88, 778-791., Abstract, pdf

 

17.

Lengyel, I.; Gáspár, V.; Beck, M. T.: Kinetics and Mechanism of Oxidation of Nitrous Acid by Chlorite Ion, J. Phys. Chem., 1988, 92, 137-140., Abstract, pdf

 

16.

Gáspár, V.; Showalter, K.: The Oscillatory Landolt Reaction. Empirical Rate Law Model and Detailed Mechanism, J. Am. Chem. Soc., 1987, 109, 4869-4876., Abstract, pdf

 

15.

Gáspár, V.; Beck, M. T.: Kinetics of the Reversible Photoaquation of Octacyanomolybdate(IV) Ion, Polyhedron, 1987, 6, 269-273, Abstract, pdf

 

14.

Gáspár, V.; Noszticzius, Z.; Farkas, H.: Numerical Simulation of the BZ Reaction of Oxalic Acid with a Simple Four-Variable Model, React. Kinet. Catal. Lett., 1987, 33, 81-86., Abstract, pdf

 

13.

Gáspár, V.; Beck, M. T.: Depressing the Bistable Behaviour of the Iodate-Arsenous Acid Reaction in a Continuous Flow Stirred Tank Reactor by the Effect of Chloride or Bromide Ions. A Method for Determination of Rate Constants, J. Phys. Chem., 1986, 90, 6303-6305., Abstract, pdf

 

12.

Gáspár, V.; Galambosi, P.: Bifurcation Diagram of the Oscillatory BZ System of Oxalic Acid in a Continuous Flow Stirred Tank Reactor, J. Phys. Chem., 1986, 90, 2222-2226., Abstract, pdf

 

11.

Gáspár, V.; Bazsa, G.; Beck, M. T.: Bistability and Bromide Controlled Oscillation during Bromate Oxidation of Ferroin in a Continuous Flow Stirred Tank Reactor, J. Phys. Chem., 1985, 89, 5495-5499., Abstract, pdf

 

10.

Noszticzius, Z.; Gáspár, V.; Försterling, H.-D.: Experimental Test for the Control Intermediate in the Belousov-Zhabotinsky (BZ) Reaction, J. Am. Chem. Soc., 1985, 107, 2314-2315., Abstract, pdf

 

9.

Gáspár, V.; Bazsa, G.; Beck, M. T.: The Influence of Visible Light on the Belousov-Zhabotinskii Oscillating Reactions Applying Different Catalysts, Z. Phys. Chem. (Leipzig), 1983, 264, 43-48., Abstract, pdf

 

8.

Gáspár, V.; Beck, M. T.: Kinetics of the Photoaquation of Hexacyano-Ferrate(II) Ion, Polyhedron, 1983, 2, 387-391., Abstract, pdf

 

7.

Gáspár, V.; Beck, M. T.: A hexaciano-ferrát(II) fotokémiai akválásának kinetikája, Magy. Kém. Foly.1982, 88, 433-437., Abstract, pdf

 

6.

Gáspár, V.; Beck, M. T.: The Influence of Ionic Strength on the Dissociation Constant of Hydrogen Cyanide, Acta. Chim. Hung., 1982, 110, 425-427., Abstract, pdf

 

5.

Gáspár, V.; Beck, M. T.: A hidrogén-cianid disszociációs állandójának ionerősségfüggése, Magy. Kém. Foly., 1980, 86, 177-179., Abstract, pdf

 

4.

Beck, M. T.; Gáspár, V.; Ling, J.: Formation of Glycine in the Hydrolysis of Coordinated Cyanogen, Inorg. Chim. Acta, 1979, 33, L177-178., Abstract, pdf

 

3.

Beck, M. T.; Gáspár, V.; Ling, J.: Glicin képződése a koordinált dicián hidrolízisekor, Magy. Kém. Foly., 1979, 85, 147-148., Abstract, pdf

 

2.

Beck, M. T.; Gáspár, V.; Goel, D. P.: Formation and Stability of Tricyano Ion, Inorg. Chim. Acta, 1979, 33, L147-148., Abstract, pdf

 

1.

Beck, M. T.; Gáspár, V.; Goel, D. P.: A dicián és a cianidion közötti kölcsönhatás, Magy. Kém. Foly., 1979, 85, 133-135., Abstract, pdf