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Földi-Bíró Linda

Földi-Bíró Linda
Debreceni Egyetem
adjunktus 2012-

Teljes publikációs lista

2023
1.
Bíró, L., Tóth, B., Lihi, N., Farkas, E., Buglyó, P.: Interaction between [(eta(6)-p-cym)M(H2O)(3)](2+) (M-II = Ru, Os) or [(eta(5)-Cp*)M(H2O)(3)](2+) (M-III = Rh, Ir) and Phosphonate Derivatives of Iminodiacetic Acid: A Solution Equilibrium and DFT Study.
Molecules. 28 (3), 1-17-, (cikkazonosító: 1477), 2023.
Folyóirat-mutatók:
Q1 Analytical Chemistry
Q1 Chemistry (miscellaneous)
Q2 Drug Discovery
Q2 Medicine (miscellaneous)
Q3 Molecular Medicine
Q2 Organic Chemistry
Q1 Pharmaceutical Science
Q2 Physical and Theoretical Chemistry
2022
2.
Bíró, L., Buglyó, P., Farkas, E.: Diversity in the Interaction of Amino Acid- and Peptide-Based Hydroxamic Acids with Some Platinum Group Metals in Solution.
Molecules. 27 (3), 1-27, 2022.
Folyóirat-mutatók:
Q2 Analytical Chemistry
Q2 Chemistry (miscellaneous)
Q2 Drug Discovery
Q2 Medicine (miscellaneous)
Q3 Molecular Medicine
Q2 Organic Chemistry
Q1 Pharmaceutical Science
Q2 Physical and Theoretical Chemistry
3.
Bíró, L., Ozsváth, A., Kapitány, R., Buglyó, P.: Pd(II) Binding Strength of a Novel Ambidentate Dipeptide-Hydroxypyridinonate Ligand: A Solution Equilibrium Study.
Molecules. 27 (14), 1-13, 2022.
Folyóirat-mutatók:
Q2 Analytical Chemistry
Q2 Chemistry (miscellaneous)
Q2 Drug Discovery
Q2 Medicine (miscellaneous)
Q3 Molecular Medicine
Q2 Organic Chemistry
Q1 Pharmaceutical Science
Q2 Physical and Theoretical Chemistry
2021
4.
Bíró, L., Buglyó, P., Farkas, E.: Factors Determining the Metal Ion Binding Ability and Selectivity of Hydroxamate-Based Compounds.
Curr. Med. Chem. 28 (35), 7209-7237, 2021.
Folyóirat-mutatók:
Q2 Biochemistry
Q2 Drug Discovery
Q2 Molecular Medicine
Q1 Organic Chemistry
Q2 Pharmacology
2020
5.
Nagy, I., Ferenczik, G., Bíró, L., Farkas, E., Bényei, A., Buglyó, P.: Metal complexation of deferasirox derivatives: A solid state and equilibrium study.
Polyhedron. 190, 1-13, 2020.
Folyóirat-mutatók:
Q2 Inorganic Chemistry
Q2 Materials Chemistry
Q2 Physical and Theoretical Chemistry
2019
6.
Ozsváth, A., Bíró, L., Nagy, E. M., Buglyó, P., Sanna, D., Farkas, E.: Trends and Exceptions in the Interaction of Hydroxamic Acid Derivatives of Common Di- and Tripeptides with Some 3d and 4d Metal Ions in Aqueous Solution.
Molecules. 24 (21), 1-25, 2019.
Folyóirat-mutatók:
Q2 Analytical Chemistry
Q2 Chemistry (miscellaneous)
Q2 Drug Discovery
Q2 Medicine (miscellaneous)
Q3 Molecular Medicine
Q2 Organic Chemistry
Q1 Pharmaceutical Science
Q2 Physical and Theoretical Chemistry
2017
7.
Sanna, D., Ugone, V., Micera, G., Buglyó, P., Bíró, L., Garribba, E.: Speciation in human blood of Metvan, a vanadium based potential anti-tumor drug.
Dalton Trans. 46 (28), 8950-8967, 2017.
Folyóirat-mutatók:
Q1 Inorganic Chemistry
8.
Buglyó, P., Parajdi-Losonczi, P. L., Bényei, A., Lihi, N., Bíró, L., Farkas, E.: Versatility of Coordination Modes in Complexes of Monohydroxamic Acids with Half-Sandwich Type Ruthenium, Rhodium, Osmium and Iridium Cations.
ChemistrySelect. 2 (26), 8127-8136, 2017.
Folyóirat-mutatók:
Q2 Chemistry (miscellaneous)
2016
9.
Sanna, D., Serra, M., Ugone, V., Manca, L., Pirastru, M., Buglyó, P., Bíró, L., Micera, G., Garribba, E.: Biorelevant reactions of the potential anti-tumor agent vanadocene dichloride.
Metallomics. 8 (5), 532-541, 2016.
Folyóirat-mutatók:
Q2 Biochemistry
Q1 Biomaterials
Q1 Biophysics
Q1 Chemistry (miscellaneous)
D1 Metals and Alloys
2015
10.
Sanna, D., Fabbri, D., Serra, M., Buglyó, P., Bíró, L., Ugone, V., Micera, G., Garribba, E.: Characterization and biotransformation in the plasma and red blood cells of VIVO2+ complexes formed by ceftriaxone.
J. Inorg. Biochem. 147, 71-84, 2015.
Folyóirat-mutatók:
Q2 Biochemistry
Q1 Inorganic Chemistry
11.
Patalenszki, J., Bíró, L., Bényei, A., Radosova Muchova, T., Kasparkova, J., Buglyó, P.: Half-sandwich complexes of ruthenium, osmium, rhodium and iridium with DL-methionine or S-methyl-L-cysteine: a solid state and solution equilibrium study.
RSC Adv. 5 (11), 8094-8107, 2015.
Folyóirat-mutatók:
Q1 Chemical Engineering (miscellaneous)
Q1 Chemistry (miscellaneous)
12.
Buglyó, P., Bíró, L., Nagy, I., Szőcs, B., Farkas, E.: Hydroxypyronate, thiohydroxypyronate and hydroxypyridinonate derivatives as potential Pb2+ sequestering agents.
Polyhedron. 92, 7-11, 2015.
Folyóirat-mutatók:
Q2 Inorganic Chemistry
Q2 Materials Chemistry
Q2 Physical and Theoretical Chemistry
2014
13.
Hüse, D., Bíró, L., Patalenszki, J., Bényei, A., Buglyó, P.: Complex Formation between [(eta(6)-p-cymene)Ru(H2O)(3)](2+) and Hydroxycarboxylates or their Sulfur Analogues - The Role of Thiolate Groups in Metal Ion Binding.
Eur. J. Inorg. Chem. 2014 (30), 5204-5216, 2014.
Folyóirat-mutatók:
Q1 Inorganic Chemistry
14.
Bíró, L., Mikó, D., Buglyó, P.: Interaction of [(eta5-Cp*)Ir(H2O)3]2+ with (O,O) Donor Ligands of Biological Importance in Aqueous Solution.
J. Biol. Inorg. Chem. 19 (Suppl), S516, 2014.
15.
Buglyó, P., Bíró, L., Hüse, D., Patalenszki, J., Rohács, L., Szőnyi, S., Bényei, A.: Interaction of [(eta 6-p-cym)M(H2O)3]2+(M = Ru, Os) with Hydroxycarboxylic Acids and Their Sulphur Analogues: A Solution Equilibrium and Solid State Study.
J. Biol. Inorg. Chem. 19 (S1), S514, 2014.
2013
16.
Bíró, L., Balogh, E., Buglyó, P.: Interaction between [Ru([eta]6-p-cym)(H2O)3]2+ and dl-serine or dl-isoserine: The role of the side chain alcoholic OH group in metal ion binding.
J. Organomet. Chem. 734, 61-68, 2013.
Folyóirat-mutatók:
Q3 Biochemistry
Q2 Inorganic Chemistry
Q1 Materials Chemistry
Q2 Organic Chemistry
Q2 Physical and Theoretical Chemistry
17.
Bíró, L., Godó, A. J., Bihari, Z., Garribba, E., Buglyó, P.: Tuning the Hydrolytic Properties of Half-Sandwich-Type Organometallic Cations in Aqueous Solution.
Eur. J. Inorg. Chem. 2013 (17), 3090-3100, 2013.
Folyóirat-mutatók:
Q1 Inorganic Chemistry
2012
18.
Sanna, D., Bíró, L., Buglyó, P., Micera, G., Garribba, E.: Biotransformation of BMOV in the presence of blood serum proteins.
Metallomics. 4 (1), 33-36, 2012.
Folyóirat-mutatók:
Q1 Biochemistry
Q1 Biomaterials
Q1 Biophysics
Q1 Chemistry (miscellaneous)
D1 Metals and Alloys
19.
Sanna, D., Buglyó, P., Bíró, L., Micera, G., Garribba, E.: Coordinating Properties of Pyrone and Pyridinone Derivatives, Tropolone and Catechol toward the VO2+ Ion: An Experimental and Computational Approach.
Eur. J. Inorg. Chem. 2012 (7), 1079-1092, 2012.
Folyóirat-mutatók:
Q1 Inorganic Chemistry
20.
Bíró, L., Farkas, E., Buglyó, P.: Hydrolytic behaviour and chloride ion binding capability of [Ru(n6-p-cym)(H2O)3]2+: a solution equilibrium study.
Dalton Trans. 41 (1), 285-291, 2012.
Folyóirat-mutatók:
Q1 Inorganic Chemistry
21.
Bíró, L., Hüse, D., Bényei, A., Buglyó, P.: Interaction of [Ru([eta]6-p-cym)(H2O)3]2+ with citrate and tricarballate ions in aqueous solution; X-ray crystal structure of novel half-sandwich Ru(II)-citrato complexes.
J. Inorg. Biochem. 116, 116-125, 2012.
Folyóirat-mutatók:
Q2 Biochemistry
Q1 Inorganic Chemistry
22.
Griffith, D. M., Bíró, L., Platts, J. A., Müller-Bunz, H., Farkas, E., Buglyó, P.: Synthesis and solution behaviour of stable mono-, di- and trinuclear Pd(II) complexes of 2,5-pyridinedihydroxamic acid: X-ray crystal structure of a novel Pd(II) hydroxamato complex.
Inorg. Chim. Acta. 380, 291-300, 2012.
Folyóirat-mutatók:
Q2 Inorganic Chemistry
Q2 Materials Chemistry
Q3 Physical and Theoretical Chemistry
23.
Sanna, D., Bíró, L., Buglyó, P., Micera, G., Garribba, E.: Transport of the anti-diabetic VO2+ complexes formed by pyrone derivatives in the blood serum.
J. Inorg. Biochem. 115, 87-99, 2012.
Folyóirat-mutatók:
Q2 Biochemistry
Q1 Inorganic Chemistry
2010
24.
Bíró, L., Farkas, E., Buglyó, P.: Complex formation between Ru(eta(6)-p-cym)(H2O)(3) (2+) and (O,O) donor ligands with biological relevance in aqueous solution.
Dalton Trans. 39 (42), 10272-10278, 2010.
Folyóirat-mutatók:
Q2 Inorganic Chemistry
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