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M. Laitaoja, Isoniemi, S., Valjakka, J., Mándity, I. M., and Jänis, J., Deciphering metal ion preference and primary coordination sphere robustness of a designed zinc finger with high-resolution mass spectrometry, Protein Science, vol. 26, pp. 198–207, 2017.
K. László, Bóta, A., and Nagy, L. G., Comparative adsorption study on carbons from polymer precursors, Carbon, vol. 38, no. 14, pp. 1965 - 1976, 2000.
K. László, Bóta, A., Nagy, L. G., and Takäcs, M., Effect of heat treatment on the immersion enthalpy of polymer based carbons, ACH - Models in Chemistry, vol. 134, no. 6, pp. 811 - 819, 1997.
K. László, Bóta, A., and Nagy, L. G., Characterization of activated carbons from waste materials by adsorption from aqueous solutions, Carbon, vol. 35, no. 5, pp. 593 - 598, 1997.
K. László, Bóta, A., and Dékány, I., Effect of heat treatment on synthetic carbon precursors, Carbon, vol. 41, no. 6, pp. 1205 - 1214, 2003.
K. László, Bóta, A., Nagy, L. G., and Cabasso, I., Porous carbon from polymer waste materials, vol. 151, no. 1-2, pp. 311 - 320, 1999.
K. László, Bóta, A., Nagy, L. G., Subklew, G., and Schwuger, M. J., Fractal approach of activated carbons from solid waste materials, Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 138, no. 1, pp. 29 - 37, 1998.
H. Li, Wang, K., Tuo, X., Almásy, L., Tian, Q., Sun, G., Henderson, M. Julian, Li, Q., Wacha, A., and Courtois, J., Thickness determination of ultrathin poly (acrylic acid) shell on γ-Fe2O3 nanocore via small-angle scattering, Materials Chemistry and Physics, vol. 204, pp. 236–242, 2018.
Y. Lin, Wu, X., Feng, S., Jiang, G., Luo, J., Zhou, S., Vrijmoed, L. L. P., Jones, E. B. G., Krohn, K., Steingröver, K., and Zsila, F., Five unique compounds: Xyloketals from mangrove fungus Xylaria sp. from the South China Sea coast, Journal of Organic Chemistry, vol. 66, no. 19, pp. 6252 - 6256, 2001.
S. F. Lockwood, Penn, M. S., Hazen, S. L., Bikadi, Z., and Zsila, F., The effects of oral Cardax (disodium disuccinate astaxanthin) on multiple independent oxidative stress markers in a mouse peritoneal inflammation model: influence on 5-lipoxygenase in vitro and in vivo., Life Sci, vol. 79, no. 2, pp. 162-74, 2006.
C. Longstaff, Varjú, I., Sótonyi, P., Szabó, L., Krumrey, M., Hoell, A., Bóta, A., Varga, Z., Komorowicz, E., and Kolev, K., Mechanical stability and fibrinolytic resistance of clots containing fibrin, DNA, and histones, Journal of Biological Chemistry, vol. 288, no. 10, pp. 6946-6956, 2013.
C. Longstaff, Hogwood, J., Gray, E., Komorowicz, E., Varjú, I., Varga, Z., and Kolev, K., Neutralisation of the anti-coagulant effects of heparin by histones in blood plasma and purified systems., Thromb Haemost, vol. 115, no. 3, pp. 591-599, 2016.
A. Lorincz, Mihály, J., Németh, C., Wacha, A., and Bóta, A., Effects of ursolic acid on the structural and morphological behaviours of dipalmitoyl lecithin vesicles, Biochimica et Biophysica Acta - Biomembranes, vol. 1848, no. 5, pp. 1092 - 1098, 2015.
I. M. Mándity, Monsignori, A., Fulop, L., Forro, E., and Fülöp, F., Exploiting aromatic interactions for β-peptide foldamer helix stabilization: A significant design element, Chemistry A - European Journal, vol. 20, pp. 4591–4597, 2014.
I. M. Mándity, Design of β-peptide foldamers by stereochemistry and topology. Saarbrücken: Lambert Academic Publishing (LAP), 2014.
I. M. Mándity, Nagy hatékonyságú kémiai átalakítások folyamatos áramban : védőcsoport-eltávolítás, deuterálás és organokatalízis, Magyar Kémikusok Lapja, vol. 67, pp. 336–337, 2012.
I. M. Mándity, Ötvös, S. B., and Fülöp, F., Strategic application of residence time control in continuous flow reactors, Chemistry Open, vol. 4, pp. 212–223, 2015.
I. M. Mándity, Weber, E., Martinek, T. A., Toth, G. K., Vass, E., and Fülöp, F., Building beta-peptide foldamers via stereochernical LEGO approach, Journal of Peptide Science, vol. 14, p. 86, 2008.
I. M. Mándity, Paragi, G., Bogár, F., and Csizmadia, I. G., A conformational analysis of histamine, and its protonated or deprotonated forms: an ab initio study, Journal of Molecular Structure: THEOCHEM, vol. 666-667, pp. 143–152, 2003.
I. M. Mándity, Fulop, L., Vass, E., Toth, G. K., Martinek, T. A., and Fülöp, F., Building beta-Peptide H10/12 Foldamer Helices with Six-Membered Cyclic Side-Chains: Fine-Tuning of Folding and Self-Assembly, Organic Letters, vol. 12, pp. 5584–5587.
I. M. Mándity, Olasz, B., Otvos, S., and Fülöp, F., CONTINUOUS-FLOW SOLID-PHASE PEPTIDE SYNTHESIS: A REVOLUTIONARY REDUCTION OF THE AMINO ACID EXCESS, Journal of Peptide Science, vol. 20, p. S57, 2014.
I. M. Mándity and Fülöp, F., An overview of peptide and peptoid foldamers in medicinal chemistry, Expert Opinion on Drug Discovery, vol. 10, pp. 1163–1177, 2015.
I. M. Mándity, Tailoring β-peptide foldamers by backbone stereochemistry and side-chain topology, Szegedi Tudományegyetem, 2011.
I. M. Mándity, Martinek, T. A., Darvas, F., and Fülöp, F., A simple, efficient, and selective deuteration via a flow chemistry approach, Tetrahedron Letters, vol. 50, pp. 4372–4374, 2009.
I. M. Mándity, Ötvös, S. B., Szolosi, G., and Fülöp, F., Harnessing the Versatility of Continuous-Flow Processes: Selective and Efficient Reactions, Chemical Record, vol. 16, pp. 1018–1033, 2016.