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ISSN print edition: 0366-6352
ISSN electronic edition: 1336-9075
Registr. No.: MK SR 9/7
Published monthly
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Author: Hudec
Liquid phase oxidation of cyclopentanone over metal-free carbon catalysts |
5943 |
– |
5960 |
Dana Gašparovičová, Milan Králik, Blažej Horváth, Tomáš Soták, and Pavol Hudec |
Vol. 78, 10 |
Preparation and characterization of K-loaded Mg/Al mixed oxides obtained from hydrotalcites for transesterification of Camelina sativa oil |
7585 |
– |
7596 |
Miroslava Mališová, Michal Horňáček, Pavol Hudec, Jozef Mikulec, Martina Slezáčková, and Elena Hájeková |
Vol. 76, 12 |
Biological activity of two novel zinc(II) complexes with NSAID mefenamic acid |
1525 |
– |
1540 |
Romana Smolková, Vladimír Zeleňák, Róbert Gyepes, and Daniela Hudecová |
Vol. 74, 5 |
Discontinuous alkylation of diphenylamine with nonene for maximum catalyst utilization |
1453 |
– |
1461 |
Michal Sklenár, Vladimír Danielik, and Pavol Hudec |
Vol. 71, 8 |
Sulphur and peroxide vulcanisation of rubber compounds – overview |
1533 |
– |
1555 |
Ján Kruželák, Richard Sýkora, and Ivan Hudec |
Vol. 70, 12 |
Use of ZSM-5 catalyst in deoxygenation of waste cooking oil |
1454 |
– |
1464 |
Peter Lovás, Pavol Hudec, Marcela Hadvinová, and Aleš Ház |
Vol. 69, 11 |
Preparation, spectral, thermal, and biological properties of zinc(II) 4-chloro- and 5-chlorosalicylate complexes with methyl 3-pyridylcarbamate and phenazone |
584 |
– |
591 |
Zuzana Bujdošová, Katarína Györyová, Daniela Hudecová, Jana Kovářová, and Ladislav Halás |
Vol. 64, 5 |
Activity and regenerability of dealuminated zeolite Y in liquid phase alkylation of benzene with 1-alkene |
469 |
– |
474 |
Michal Horňáček, Pavol Hudec, Andrej Nociar, Agáta Smiešková, and Tibor Jakubík |
Vol. 64, 4 |
Synthesis and characterization of mesoporous molecular sieves |
689 |
– |
697 |
Michal Horňáček, Pavol Hudec, and Agáta Smiešková |
Vol. 63, 6 |
Some Possibilities of Catalytic and Noncatalytic Utilization of Zeolites |
62 |
– |
69 |
D. Mravec, J. Hudec, and I. Janotka |
Vol. 59, 1 |
Characterization of Some New Mg(II) Complexes with Heterocyclic
N-Donor Ligands and their Antimicrobial Effects |
39 |
– |
44 |
S. C. Mojumdar, D. Hudecová, M. Melník, and E. Jóna |
Vol. 54, 1 |
Antimicrobial Activities of Iron Perchlorate Complexes of Triphenylphosphine and Triphenylarsine Oxides |
45 |
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48 |
I. Ondrejkovičová, A. Vančová, D. Hudecová, and M. Melník |
Vol. 54, 1 |
Preparation and Properties of Magnesium(II) Compounds with Some Bioactive Ligands |
265 |
– |
271 |
S. C. Mojumdar, M. Melník, E. Jóna, and D. Hudecová |
Vol. 53, 4 |
Crustacean microsomal P450 monooxygenase enzyme system. A comparison with mammalian liver microsomes |
517 |
– |
517 |
B. Kubickova, P. Hodek, M. Sulc, and J. Hudecek |
Vol. 52, SI |
Resonance Raman spectral analysis of CYP102 and CYP1A2 |
519 |
– |
519 |
J. Hudecek, P. Anzenbacher, P. Hildebrandt, and Aw. Munro |
Vol. 52, SI |
Derivatives of quinoline-4-carboxylic acid and quinoline-4-carboxamide and their antimicrobial activity |
571 |
– |
571 |
J. Strigacova, D. Hudecova, A. Lasikova, D. Vegh, and M. Simkovic |
Vol. 52, SI |
New uracil derivatives and their biological activities |
576 |
– |
576 |
D. Hudecova, J. Strigacova, P. Chovanec, and M. Uher |
Vol. 52, SI |
Laboratory Diagnosis of Antiphospholipid Auto-antibody Syndrome in Materials of National Center of Hemostasis and Trombosis in Martin |
809 |
– |
809 |
J. Fedorová, J. Lehotský, J. Hudeček, and P. Kubisz |
Vol. 52, 6 |
Isopropylation of Naphthalene over Dealuminated H-Mordenites |
218 |
– |
221 |
D. Mravec, J. Chylík, M. Michvocík, M. Hronec, A. Smiešková, and P. Hudec |
Vol. 52, 4 |
Iron Complexes of Triphenylphosphine and Triphenylarsine Oxides and their Antimicrobial Activities |
123 |
– |
126 |
D. Hudecová, I. Ondrejkovičová, V. Vančováa, J. Augustín, and M. Melník |
Vol. 52, 2 |
Derivatives of 4H-pyran-4-one with the atom of sulfur in the side chain |
421 |
– |
426 |
M. Uher, L. Kyselicova, O. Rajniakova, D. Hudecova, J. Bransova, and J. Brtko |
Vol. 51, 6B |
A short, multigram synthetic route to methyl 2-amino-4-methyl-3-thiophenecarboxylate as a precursor for preparation of new biologically active derivatives and novel materials |
437 |
– |
442 |
R. Pavlovicova, J. Minarikova, D. Hudecova, and D. Vegh |
Vol. 51, 6B |
Preparation of Aluminium Oxide Aerogels |
328 |
– |
331 |
M. Chovancová, L. Števula, P Hudec, M. Zemanová, and M. Komenda |
Vol. 51, 6A |
Preparation and Biological Activity of 6H-5,l,3-Benzothiadiazocines |
28 |
– |
34 |
M. Bodajla, Š. Stankovský, S. Jantová, D. Hudecová, and K. Špirková |
Vol. 50, 1 |
Azolylquinazolines, Synthesis and Biological Activity |
432 |
– |
436 |
M. Bodajla, Š. Stankovský, K. Špirková, S. Jantová, and D. Hudecová |
Vol. 48, 6 |
Reaction of 5-Hydroxy-2-hydroxymethyl-4H-pyran-4-one with Aromatic Aldehydes and Amines (Betti Reaction) |
182 |
– |
184 |
M. Konopíková M. Uher, J. Bransová, V. Mastihuba, and D. Hudecová |
Vol. 48, 3 |
Influence of 1,4-dihydropyridine derivatives on the initiated polymerization and oxidation of vinyl monomers |
635 |
– |
641 |
A. Hrivík, E. Hudecová, D. Ilavský, and P. Rosner |
Vol. 41, 5 |
Emulsion polymerization in the presence of inorganic material |
475 |
– |
483 |
D. Mikulášová, V. Chrástová, P. Citovický, and I. Hudec |
Vol. 37, 4 |
Photoinitiated emulsion polymerization of styrene or methyl methacrylate in the presence of zinc oxide |
485 |
– |
494 |
I. Hudec, D. Mikulášová, P. Citovický, and V. Chrástová |
Vol. 37, 4 |
Polymerization of styrene in the presence of N,N-disubstituted hydroxylamines |
503 |
– |
509 |
A. Hrivík, J. Beniska, and E. Hudecová |
Vol. 37, 4 |
Polymolecularity of the extremely high molecular mass polymer prepared by emulsion polymerization with a macromolecular initiator forming a heterogeneous phase |
533 |
– |
541 |
L. Šoltés, D. Mikulášová, J. Susla, and I. Hudec |
Vol. 35, 4 |
Measurements of molecular characteristics of the extremely high molecular mass polystyrene in solution |
543 |
– |
549 |
L. Šoltés, D. Mikulášová, and I. Hudec |
Vol. 35, 4 |
Identification and determination of some isomers of tert-butylcresols in technical 2,6-bis(tert-butyl)-4-methylphenol by gas chromatography |
786 |
– |
793 |
E. Kardoš, V. Kosljar, J. Hudec, and P. Ilka |
Vol. 22, 10 |
Metabolism of Streptomyces aureofaciens in the biosynthesis of chlortetracycline on starch substrate |
678 |
– |
682 |
J. Zelinka and M. Hudec |
Vol. 16, 9 |
Amino acids in fermentation media. V. Their composition in Slovak sugar-beet molasses |
306 |
– |
308 |
J. Zelinka and M. Hudec |
Vol. 15, 4 |
Amino acids in fermentation substrates. III. Metabolism of amino acids in fermentation by Streptomyces aureofaciens |
240 |
– |
245 |
J. Zelinka and M. Hudec |
Vol. 14, 3 |
Amino acids in fermentation substrates. II. Amino acids in corn extract, potato-tuber waters, and fermentation extract from bran and pulp of oil-bearing seeds |
193 |
– |
198 |
J. Zelinka and M. Hudec |
Vol. 13, 3 |
New ways of biosynthetic production of antibiotics. I. The production of technical pure chlortetracycline |
121 |
– |
127 |
E. Bělik, M. Herold, M. Hudec, J. Mišečka, and J. Zelinka |
Vol. 12, 2 |
Amino acids in fermentation substrates. I. Identification of γ-aminobutyric acid corn steep liquor |
620 |
– |
626 |
J. Zelinka and M. Hudec |
Vol. 12, 10 |
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Sunday, November 24, 2024
SCImago Journal Rank 2023
0.381
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