{"id":8,"date":"2016-02-08T08:18:49","date_gmt":"2016-02-08T08:18:49","guid":{"rendered":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/?page_id=8"},"modified":"2016-02-08T09:04:06","modified_gmt":"2016-02-08T09:04:06","slug":"publications","status":"publish","type":"page","link":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<p>&nbsp;<\/p>\n<ol>\n<li>Sobolciak, P., Karkri, M., Al-Maadeed, M.A., Krupa, I., Thermal characterization of phase change materials based on linear low-density polyethylene, paraffin wax and expanded graphite, (2016) Renewable Energy, 88, pp. 372-382.<\/li>\n<\/ol>\n<ol start=\"2\">\n<li>Didier, G., Mustapha, K., AlMaadeed, M.A., Krupa, I. A new experimental device and inverse method to characterize thermal properties of composite phase change materials,\u00a0(2015) Composite Structures, 133, art. no. 6730, pp. 1149-1159.<\/li>\n<\/ol>\n<ol start=\"3\">\n<li>Sobolciak, P., Mrl\u00edk, M., Almaadeed, M.A., Krupa, I, Calorimetric and dynamic mechanical behavior of phase change materials based on paraffin wax supported by expanded graphite, (2015) Thermochimica Acta, 617, pp. 111-119.<\/li>\n<\/ol>\n<ol start=\"4\">\n<li>Sobol\u010diak, P., Abdelrazeq, H., Ouederni, M., Karkri, M., Al-Maadeed, M.A., Krupa, I.\u00a0The stabilizing effect of expanded graphite on the artificial aging of shape stabilized phase\u00a0change materials, (2015) Polymer Testing, 46, pp. 65-71.<\/li>\n<\/ol>\n<ol start=\"5\">\n<li>Krupa, I., N\u00f3gellov\u00e1, Z., \u0160pitalsk\u00fd, Z., Mal\u00edkov\u00e1, M., Sobol\u010diak, P., Abdelrazeq, H.W., Ouederni, M., Karkri, M., Janigov\u00e1, I., Al-Maadeed, M.A.S.A., Positive influence of expanded graphite on the physical behavior of phase change materials based on linear low-density polyethylene and paraffin wax (2015), Thermochimica Acta, 614, pp. 218-225.<\/li>\n<\/ol>\n<ol start=\"6\">\n<li>AlMaadeed, M.A., Labidi, S., Krupa, I., Karkri, M., Effect of expanded graphite on the phase change materials of high density polyethylene\/wax blends, (2015) Thermochimica Acta, 600, pp. 35-44.<\/li>\n<\/ol>\n<ol start=\"7\">\n<li>AlMaadeed, M.A., Labidi, S., Krupa, I., Ouederni, M., Effect of waste wax and chain structure on the mechanical and physical properties of polyethylene (2015) Arabian Journal of Chemistry, 8 (3), pp. 388-399.<\/li>\n<\/ol>\n<ol start=\"8\">\n<li>Cabeza, L.F., Barreneche, C., Martorell, I., Mir\u00f3, L., Sari-Bey, S., Fois, M., Paksoy, H.O., Sahan, N., Weber, R., Constantinescu, M., Anghel, E.M., Malikova, M., Krupa, I., Delgado, M., Dolado, P., Furmanski, P., Jaworski, M., Haussmann, T., Gschwander, S., Fern\u00e1ndez, A.I., Unconventional experimental technologies available for phase change materials (PCM) characterization. Part 1. Thermophysical properties, (2015) Renewable and Sustainable Energy Reviews, 43, pp. 1399-1414.<\/li>\n<\/ol>\n<ol start=\"9\">\n<li>In\u00e9s Fern\u00e1ndez, A., Sol\u00e9, A., Gir\u00f3-Paloma, J., Mart\u00ednez, M., Hadjieva, M., Boudenne, A., Constantinescu, M., Maria Anghel, E., Malikova, M., Krupa, I., Pe\u00f1alosa, C., L\u00e1zaro, A., Paksoy, H.O., Cellat, K., Vecstaud\u017ea, J., Bajare, D., Sumiga, B., Boh, B., Haussmann, T., Gschwander, S., Weber, R., Furmanski, P., Jaworski, M., Cabeza, L.F., Unconventional experimental technologies used for phase change materials (PCM) characterization: Part 2 &#8211; Morphological and structural characterization, physico-chemical stability and mechanical properties, (2015) Renewable and Sustainable Energy Reviews, 43, pp. 1415-1426. .<\/li>\n<\/ol>\n<ol start=\"10\">\n<li>\u0160pitalsk\u00fd, Z., Kratochv\u00edla, J., Csomorov\u00e1, K., Krupa, I., Gra\u00e7a, M.P.F., Costa, L.C., Mechanical and Electrical Properties of Styrene-Isoprene-Styrene Copolymer Doped with Expanded Graphite Nanoplatelets, (2015) Journal of Nanomaterials, 2015, art. no. 168485, .<\/li>\n<\/ol>\n<ol start=\"11\">\n<li>Krupa, I., Prostredny, M., \u0160pitalsky, Z., Kraj\u010di, J., Almaadeed, M.A.S., Electrically conductive composites based on an elastomeric matrix filled with expanded graphite as a potential oil sensing material, (2014) Smart Materials and Structures, 23 (12), art. no. 125020<\/li>\n<\/ol>\n<ol start=\"12\">\n<li>Sadasivuni, K.K., Ponnamma, D., Kasak, P., Krupa, I., Al-Maadeed, M.A.S.A.. Designing dual phase sensing materials from polyaniline filled styrene-isoprene-styrene composites, (2014) Materials Chemistry and Physics, 147 (3), pp. 1029-1036.<\/li>\n<\/ol>\n<ol start=\"13\">\n<li>Sotomayor, M.E., Krupa, I., V\u00e1rez, A., Levenfeld, B., Thermal and mechanical characterization of injection moulded high density polyethylene\/paraffin wax blends as phase change materials, (2014) Renewable Energy, 68, pp. 140-145.<\/li>\n<\/ol>\n<ol start=\"14\">\n<li>Sari-Bey, S., Fois, M., Krupa, I., Ibos, L., Benyoucef, B., Candau, Y., Thermal characterization of polymer matrix composites containing microencapsulated paraffin in solid or liquid state, (2014) Energy Conversion and Management, 78, pp. 796-804.<\/li>\n<\/ol>\n<ol start=\"15\">\n<li>Torras, N., Zinoviev, K.E., Camargo, C.J., Campo, E.M., Campanella, H., Esteve, J., Marshall, J.E., Terentjev, E.M., Omastov\u00e1, M., Krupa, I., Teplick\u00fd, P., Mamojka, B., Bruns, P., Roeder, B., Vallribera, M., Malet, R., Zuffanelli, S., Soler, V., Roig, J., Walker, N., Wenn, D., Vossen, F., Crompvoets, F.M.H., Tactile device based on opto-mechanical actuation of liquid crystal elastomers, (2014) Sensors and Actuators, A: Physical, 208, pp. 104-112.<\/li>\n<\/ol>\n<ol start=\"16\">\n<li>Il\u010d\u00edkov\u00e1, M., Mrl\u00edk, M., Sedl\u00e1\u010dek, T., Chorv\u00e1t, D., Krupa, I., \u0160louf, M., Koynov, K., Mosn\u00e1\u010dek, J., Viscoelastic and photo-actuation studies of composites based on polystyrene-grafted carbon nanotubes and styrene-b-isoprene-b-styrene block copolymer, (2014) Polymer (United Kingdom), 55 (1), pp. 211-218.<\/li>\n<\/ol>\n<ol start=\"17\">\n<li>Krupa, I., N\u00f3gellov\u00e1, Z., \u0160pitalsk\u00fd, Z., Janigov\u00e1, I., Boh, B., Sumiga, B., Kleinov\u00e1, A., Karkri, M., Almaadeed, M.A., Phase change materials based on high-density polyethylene filled with microencapsulated paraffin wax, (2014) Energy Conversion and Management, 87, pp. 400-409.<\/li>\n<\/ol>\n<ol start=\"18\">\n<li>Teixeira, S.S., Grac\u00b8a, M.P.F., Dionisio, M., Ilc\u00edkova, M., Mosnacek, J., Spitalsky, Z., Krupa, I., Costa, L.C., Self-standing elastomeric composites based on lithium ferrites and their dielectric behavior, (2014) Journal of Applied Physics, 116 (22), art. no. 224102, .<\/li>\n<\/ol>\n<ol start=\"19\">\n<li>Trigui, A., Karkri, M., Krupa, I., Thermal conductivity and latent heat thermal energy storage properties of LDPE\/wax as a shape-stabilized composite phase change material, (2014) Energy Conversion and Management, 77, pp. 586-596.<\/li>\n<\/ol>\n<ol start=\"20\">\n<li>Il\u010d\u00edkov\u00e1, M., Mosn\u00e1\u010dek, J., Mrl\u00edk, M., Sedl\u00e1\u010dek, T., Csomorov\u00e1, K., Czanikov\u00e1, K., Krupa, I., Influence of surface modification of carbon nanotubes on interactions with polystyrene-b-polyisoprene-b-polystyrene matrix and its photo-actuation properties, (2014) Polymers for Advanced Technologies, 25 (11), pp. 1293-1300.<\/li>\n<\/ol>\n<ol start=\"21\">\n<li>AlMaadeed, M.A., N\u00f3gellov\u00e1, Z., Mi\u010du\u0161\u00edk, M., Nov\u00e1k, I., Krupa, I., Mechanical, sorption and adhesive properties of composites based on low density polyethylene filled with date palm wood powder, (2014) Materials and Design, 53, pp. 29-37.<\/li>\n<\/ol>\n<ol start=\"22\">\n<li>AlMaadeed, M.A., N\u00f3gellov\u00e1, Z., Janigov\u00e1, I., Krupa, I., Improved mechanical properties of recycled linear low-density polyethylene composites filled with date palm wood powder, (2014) Materials and Design, 58, pp. 209-216.<\/li>\n<\/ol>\n<ol start=\"23\">\n<li>Czanikov\u00e1, K., Il\u010d\u00edkov\u00e1, M., Krupa, I., Mi\u010du\u0161\u00edk, M., Kas\u00e1k, P., Pavlova, E., Mosn\u00e1\u010dek, J., Chorv\u00e1t Jr, D., Omastov\u00e1, M., Elastomeric photo-actuators and their investigation by confocal laser scanning microscopy, (2013) Smart Materials and Structures, 22 (10), art. no. 104001.<\/li>\n<\/ol>\n<ol start=\"24\">\n<li>Czanikov\u00e1, K., Torras, N., Esteve, J., Krupa, I., Kas\u00e1k, P., Pavlova, E., Ra\u010dko, D., Chod\u00e1k, I., Omastov\u00e1, M., Nanocomposite photoactuators based on an ethylene vinyl acetate copolymer filled with carbon nanotubes, (2013) Sensors and Actuators, B: Chemical, 186, pp. 701-710.<\/li>\n<\/ol>\n<ol start=\"25\">\n<li>Il\u010d\u00edkov\u00e1, M., Czanikov\u00e1, K., Mosn\u00e1\u010dek, J., Mi\u010du\u0161\u00edk, M., Kas\u00e1k, P., Omastov\u00e1, M., Chorv\u00e1t Jr., D., Krupa, I., \u0160louf, M., Koynov, K., Photoactuating of materials designed for haptic aid-tablets for visually impaired people based on styrene-b-isoprene-b-styrene block copolymer nanocomposites, (2013) Chemik, 67 (3), pp. 224-231.<\/li>\n<\/ol>\n<ol start=\"26\">\n<li>Kratochv\u00edla, J., Boudenne, A., Krupa, I., Effect of filler size on thermophysical and electrical behavior of nanocomposites based on expanded graphite nanoparticles filled in low-density polyethylene matrix, (2013) Polymer Composites, 34 (2), pp. 149-155.<\/li>\n<\/ol>\n<ol start=\"27\">\n<li>Krupa, I., Cecen, V., Boudenne, A., Proke\u0161, J., Nov\u00e1k, I., The mechanical and adhesive properties of electrically and thermally conductive polymeric composites based on high density polyethylene filled with nickel powder, (2013) Materials and Design, 51, pp. 620-628.<\/li>\n<\/ol>\n<ol start=\"28\">\n<li>Czanikov\u00e1, K., Krupa, I., Il\u010d\u00edkov\u00e1, M., Kas\u00e1k, P., Chorv\u00e1t Jr., D., Valentin, M., \u0160louf, M., Mosn\u00e1\u010dek, J., Mi\u010du\u0161\u00edk, M., Omastov\u00e1, M., Photo-actuating materials based on elastomers and modified carbon nanotubes, (2012) Journal of Nanophotonics, 6 (1), art. no. 063522.<\/li>\n<\/ol>\n<ol start=\"29\">\n<li>Krupa, I., Cecen, V., Boudenne, A., Kri\u017eanov\u00e1, Z., V\u00e1vra, I., Srn\u00e1nek, R., Radn\u00f3czi, G., Mechanical Properties and Morphology of Composites Based on the EVA Copolymer Filled with Expanded Graphite, (2012) Polymer &#8211; Plastics Technology and Engineering, 51 (13), pp. 1388-1393.<\/li>\n<\/ol>\n<ol start=\"30\">\n<li>Nov\u00e1k, I., Popelka, A., Krupa, I., Chod\u00e1k, I., Janigov\u00e1, I., Nedel\u010dev, T., \u0160p\u00edrkov\u00e1, M., Kleinov\u00e1, A., High-density polyethylene functionalized by cold plasma and silanes, (2012) Vacuum, 86 (12), pp. 2089-2094.<\/li>\n<\/ol>\n<ol start=\"31\">\n<li>Tavman, I., Krupa, I., Omastova, M., Sarikanat, M., Novak, I., Sever, K., Ozdemir, I., Seki, Y., Podhradsk\u00e1, S., Moskova, D., Erbay, E., Guner, F., Effects of conductive graphite filler loading on physical properties of high-density polyethylene composite, (2012) Polymer Composites, 33 (7), pp. 1071-1076.<\/li>\n<\/ol>\n<ol start=\"32\">\n<li>Czanikov\u00e1, K., \u0160pitalsk\u00fd, Z., Krupa, I., Omastov\u00e1, M., Electrical and mechanical properties of ethylene vinyl acetate based composites, (2012) Materials Science Forum, 714, pp. 193-199.<\/li>\n<\/ol>\n<ol start=\"33\">\n<li>\u0160est\u00e1k, J., Deanko, P., Knapec, M., Krupa, I., Valentin, M., Process of preparation and application of inorganic-organic nanosol for hydrophobic finish of textile materials [Pr\u00edprava a overenie aplik\u00e1cie anorganicko-organick\u00fdch nanos\u00f3lov pre hydrof\u00f3bnu \u00fapravu text\u00edli\u00ed], (2011) Vlakna a Textil, 18 (4), pp. 16-24.<\/li>\n<\/ol>\n<ol start=\"34\">\n<li>Mngomezulu, M.E., Luyt, A.S., Krupa, I., Structure and properties of phase-change materials based on high-density polyethylene, hard Fischer-Tropsch paraffin wax, and wood flour, (2011) Polymer Composites, 32 (8), pp. 1155-1163.<\/li>\n<\/ol>\n<ol start=\"35\">\n<li>Krupa, I., Nedel\u010dev, T., Chorv\u00e1t Jr., D., Ra\u010dko, D., Lac\u00edk, I., Glucose diffusivity and porosity in silica hydrogel based on organofunctional silanes, (2011) European Polymer Journal, 47 (7), pp. 1477-1484.<\/li>\n<\/ol>\n<ol start=\"36\">\n<li>Kas\u00e1k, P., Kronekov\u00e1, Z., Krupa, I., Lac\u00edk, I., Zwitterionic hydrogels crosslinked with novel zwitterionic crosslinkers: Synthesis and characterization, (2011) Polymer, 52 (14), pp. 3011-3020.<\/li>\n<\/ol>\n<ol start=\"37\">\n<li>Tlili, R., Cecen, V., Krupa, I., Boudenne, A., Ibos, L., Candau, Y., Nov\u00e1k, I., Mechanical and thermophysical properties of EVA copolymer filled with nickel particles, (2011) Polymer Composites, 32 (5), pp. 727-736.<\/li>\n<\/ol>\n<ol start=\"38\">\n<li>Lobotka, P., Kunzo, P., Kovacova, E., Vavra, I., Krizanova, Z., Smatko, V., Stejskal, J., Konyushenko, E.N., Omastova, M., Spitalsky, Z., Micusik, M., Krupa, I., Thin polyaniline and polyaniline\/carbon nanocomposite films for gas sensing, (2011) Thin Solid Films, 519 (12), pp. 4123-4127.<\/li>\n<\/ol>\n<ol start=\"39\">\n<li>Mngomezulu, M.E., Luyt, A.S., Krupa, I., Structure and properties of phase change materials based on HDPE, soft Fischer-Tropsch paraffin wax, and wood flour, (2010) Journal of Applied Polymer Science, 118 (3), pp. 1541-1551.<\/li>\n<\/ol>\n<ol start=\"40\">\n<li>Nedel\u010dev, T., Krupa, I., Hrdlovi\u010d, P., Koll\u00e1r, J., Chorv\u00e1t Jr., D., Lac\u00edk, I., Silica hydrogel formation and aging monitored by pyrene-based fluorescence probes, (2010) Journal of Sol-Gel Science and Technology, 55 (2), pp. 143-150.<\/li>\n<\/ol>\n<ol start=\"41\">\n<li>Molefi, J.A., Luyt, A.S., Krupa, I., Investigation of thermally conducting phase-change materials based on polyethylene\/wax blends filled with copper particles, (2010) Journal of Applied Polymer Science, 116 (3), pp. 1766-1774.<\/li>\n<\/ol>\n<ol start=\"42\">\n<li>Tlili, R., Boudenne, A., Cecen, V., Ibos, L., Krupa, I., Candau, Y., Thermophysical and electrical properties of nanocomposites based on ethylene-vinylacetate copolymer (EVA) filled with expanded and unexpanded graphite, (2010) International Journal of Thermophysics, 31 (4-5), pp. 936-948.<\/li>\n<\/ol>\n<ol start=\"43\">\n<li>Molefi, J.A., Luyt, A.S., Krupa, I., Comparison of LDPE, LLDPE and HDPE as matrices for phase change materials based on a soft Fischer-Tropsch paraffin wax, (2010) Thermochimica Acta, 500 (1-2), pp. 88-92.<\/li>\n<\/ol>\n<ol start=\"44\">\n<li>Luyt, A.S., Krupa, I., Assumption, H.J., Ahmad, E.E.M., Mofokeng, J.P., Blends of polyamide 12 and maleic anhydride grafted paraffin wax as potential phase change materials, (2010) Polymer Testing, 29 (1), pp. 100-106.<\/li>\n<\/ol>\n<ol start=\"45\">\n<li>Krupa, I., Nedel\u010dev, T., Ra\u010dko, D., Lac\u00edk, I., Mechanical properties of silica hydrogels prepared and aged at physiological conditions: Testing in the compression mode, (2010) Journal of Sol-Gel Science and Technology, 53 (1), pp. 107-114.<\/li>\n<\/ol>\n<ol start=\"46\">\n<li>Molefi, J.A., Luyt, A.S., Krupa, I., Comparison of the influence of copper micro- and nano-particles on the mechanical properties of polyethylene\/copper composites, (2010) Journal of Materials Science, 45 (1), pp. 82-88.<\/li>\n<\/ol>\n<ol start=\"47\">\n<li>Tavman, I., \u00c7e\u00e7en, V., \u00d6zdemir, I., Turgut, A., Krupa, I., Omastova, M., Novak, I., Preparation and characterization of highly electrically and thermally conductive polymeric nanocomposites, (2009) Archives of Materials Science and Engineering, 40 (2), pp. 84-88.<\/li>\n<\/ol>\n<ol start=\"48\">\n<li>Molefi, J.A., Luyt, A.S., Krupa, I., Comparison of the influence of Cu micro- and nano-particles on the thermal properties of polyethylene\/Cu composites, (2009) Express Polymer Letters, 3 (10), pp. 639-649.<\/li>\n<\/ol>\n<ol start=\"49\">\n<li>Micus\u00edk, M., Omastova, M., Krupa, I., Prokes, J., Pissis, P., Logakis, E., Pandis, C., Potschke, P., Pionteck, J., A comparative study on the Electrical and mechanical behaviour of multi-walled carbon nanotube composites prepared by diluting a masterbatch with various types of polypropylenes, (2009) Journal of Applied Polymer Science, 113 (4), pp. 2536-2551.<\/li>\n<\/ol>\n<ol start=\"50\">\n<li>Krupa, I., Cecen, V., Boudenne, A., Ibos, L., Tlili, R., Nov\u00e1k, I., Omastov\u00e1, M., Proke\u0161, J., Pionteck, J., Kri\u017eanov\u00e1, Z., V\u00e1vra, I., Properties of conductive nanocomposites based on EVA copolymer and expanded graphite, (2009) Chemicke Listy, 103 (13), pp. s108-s109.<\/li>\n<\/ol>\n<ol start=\"51\">\n<li>Luyt, A.S., Krupa, I., Phase change materials formed by uv curable epoxy matrix and Fischer-Tropsch paraffin wax, (2009) Energy Conversion and Management, 50 (1), pp. 57-61.<\/li>\n<\/ol>\n<ol start=\"52\">\n<li>Cecen, V., Boudenne, A., Ibos, L., Nov\u00e1k, I., N\u00f3gellov\u00e1, Z., Proke\u0161, J., Krupa, I., Electrical, mechanical and adhesive properties of ethylene-vinylacetate copolymer (EVA) filled with wollastonite fibers coated by silver, (2008) European Polymer Journal, 44 (11), pp. 3827-3834.<\/li>\n<\/ol>\n<ol start=\"53\">\n<li>Krupa, I., Cecen, V., Tlili, R., Boudenne, A., Ibos, L., Thermophysical properties of ethylene-vinylacetate copolymer (EVA) filled with wollastonite fibers coated by silver, (2008) European Polymer Journal, 44 (11), pp. 3817-3826.<\/li>\n<\/ol>\n<ol start=\"54\">\n<li>Nedel\u010dev, T., Krupa, I., Lath, D., \u0160p\u00edrkov\u00e1, M., The leaching of Rhodamine B, Naphthol Blue Black, Metanil Yellow and Bismarck Brown R from silica deposits on polyester and viscose textiles, (2008) Journal of Sol-Gel Science and Technology, pp. 1-10.<\/li>\n<\/ol>\n<ol start=\"55\">\n<li>Nedel\u010dev, T., Ra\u010dko, D., Krupa, I.Preparation and characterization of a new derivative of rhodamine B with an alkoxysilane moiety, (2008) Dyes and Pigments, 76 (2), pp. 550-556.<\/li>\n<\/ol>\n<ol start=\"56\">\n<li>Krupa, I., Mikov\u00e1, G., Luyt, A.S., Phase change materials based on low-density polyethylene\/paraffin wax blends (2007) European Polymer Journal, 43 (11), pp. 4695-4705.<\/li>\n<\/ol>\n<ol start=\"57\">\n<li>Mi\u010du\u0161\u00edk, M., Nedel\u010dev, T., Omastov\u00e1, M., Krupa, I., Olejn\u00edkov\u00e1, K., Fedorko, P., Chehimi, M.M., Conductive polymer-coated textiles: The role of fabric treatment by pyrrole-functionalized triethoxysilane, (2007) Synthetic Metals, 157 (22-23), pp. 914-923.<\/li>\n<\/ol>\n<ol start=\"58\">\n<li>Pandis, Ch., Logakis, E., Chorianopoulos, M., Spanoudaki, A., Kyritsis, A., Peoglos, V., Pissis, P., Mi\u010du\u0161\u00edk, M., Krupa, I., Omastov\u00e1, M., Pi\u00f6nteck, J., P\u00f6tschke, P., Thermal and electrical characterization of polypropylene\/carbon nanotube nanocomposites, (2007) 2007 NSTI Nanotechnology Conference and Trade Show &#8211; NSTI Nanotech 2007, Technical Proceedings, 2, pp. 166-169.<\/li>\n<\/ol>\n<ol start=\"59\">\n<li>Krupa, I., Mikov\u00e1, G., Nov\u00e1k, I., Janigov\u00e1, I., N\u00f3gellov\u00e1, Z., Lednick\u00fd, F., Proke\u0161, J., Electrically conductive composites of polyethylene filled with polyamide particles coated with silver, (2007) European Polymer Journal, 43 (6), pp. 2401-2413.<\/li>\n<\/ol>\n<ol start=\"60\">\n<li>Krupa, I., Boudenne, A., Ibos, L., Thermophysical properties of polyethylene filled with metal coated polyamide particles, (2007) European Polymer Journal, 43 (6), pp. 2443-2452.<\/li>\n<\/ol>\n<ol start=\"61\">\n<li>Krupa, I., Mikov\u00e1, G., Luyt, A.S., Polypropylene as a potential matrix for the creation of shape stabilized phase change materials, (2007) European Polymer Journal, 43 (3), pp. 895-907.<\/li>\n<\/ol>\n<ol start=\"62\">\n<li>Nov\u00e1k, I., \u0160teviar, M., Chod\u00e1k, I., Krupa, I., Nedel\u010dev, T., \u0160p\u00edrkov\u00e1, M., Chehimi, M.M., Mosn\u00e1\u010dek, J., Kleinov\u00e1, A., Study of adhesion and surface properties of low-density poly(ethylene) pre-treated by cold discharge plasma, (2007) Polymers for Advanced Technologies, 18 (2), pp. 97-105.<\/li>\n<\/ol>\n<ol start=\"63\">\n<li>Nedel\u010dev, T., Krupa, I., Csomorov\u00e1, K., Janigov\u00e1, I., Rychl\u00fd, J., Synthesis and characterization of the new silane-based antioxidant containing 2,6-di-tert-butylphenolic stabilizing moiety, (2007) Polymers for Advanced Technologies, 18 (2), pp. 157-164.<\/li>\n<\/ol>\n<ol start=\"64\">\n<li>Luyt, A.S., Krupa, I., Thermal behaviour of low and high molecular weight paraffin waxes used for designing phase change materials, (2007) Thermochimica Acta, 467 (1-2), pp. 117-120.<\/li>\n<\/ol>\n<ol start=\"65\">\n<li>Mi\u010du\u0161\u00edk, M., Omastov\u00e1, M., Proke\u0161, J., Krupa, I., Mechanical and electrical properties of composites based on thermoplastic matrices and conductive cellulose fibers, (2006) Journal of Applied Polymer Science, 101 (1), pp. 133-142.<\/li>\n<\/ol>\n<ol start=\"66\">\n<li>Nov\u00e1k, I., Krupa, I., Luyt, A.S., Modification of the polarity and adhesive properties of polyolefins through blending with maleic anhydride grafted Fischer-Tropsch paraffin wax, (2006) Journal of Applied Polymer Science, 100 (4), pp. 3069-3074.<\/li>\n<\/ol>\n<ol start=\"67\">\n<li>Nov\u00e1k, I., Krupa, I., Luyt, A.S., Improvement of the polarity of polyethylene with oxidized Fischer-Tropsch paraffin wax and its influence on the final mechanical properties, (2005) Journal of Applied Polymer Science, 95 (5), pp. 1164-1168.<\/li>\n<\/ol>\n<ol start=\"68\">\n<li>Nov\u00e1k, I., Krupa, I., Janigov\u00e1, I., Hybrid electro-conductive composites with improved toughness, filled by carbon black, (2005) Carbon, 43 (4), pp. 841-848.<\/li>\n<\/ol>\n<ol start=\"69\">\n<li>Krupa, I., Nov\u00e1k, I., Chod\u00e1k, I., Electrically and thermally conductive polyethylene\/graphite composites and their mechanical properties, (2004) Synthetic Metals, 145 (2-3), pp. 245-252.<\/li>\n<\/ol>\n<ol start=\"70\">\n<li>Nov\u00e1k, I., Krupa, I., Luyt, A.S., Modification of the polarity of isotactic polypropylene through blending with oxidized paraffin wax, (2004) Journal of Applied Polymer Science, 94 (2), pp. 529-533.<\/li>\n<\/ol>\n<ol start=\"71\">\n<li>Nov\u00e1k, I., Krupa, I., Luyt, A.S., Modification of a Fischer-Tropsch wax by grafting with maleic anhydride, (2004) Journal of Applied Polymer Science, 93 (2), pp. 662-668.<\/li>\n<\/ol>\n<ol start=\"72\">\n<li>Nov\u00e1k, I., Krupa, I., Chod\u00e1k, I., Electroconductive adhesives based on epoxy and polyurethane resins filled with silver-coated inorganic fillers, (2004) Synthetic Metals, 144 (1), pp. 13-19.<\/li>\n<\/ol>\n<ol start=\"73\">\n<li>Nov\u00e1k, I., Krupa, I., Electro-conductive resins filled with graphite for casting applications, (2004) European Polymer Journal, 40 (7), pp. 1417-1422.<\/li>\n<\/ol>\n<ol start=\"74\">\n<li>Nov\u00e1k, I., Krupa, I., Chod\u00e1k, I., Analysis of correlation between percolation concentration and elongation at break in filled electroconductive epoxy-based adhesives, (2003) European Polymer Journal, 39 (3), pp. 585-592.<\/li>\n<\/ol>\n<ol start=\"75\">\n<li>Hlangothi, S.P., Krupa, I., Djokovi\u0107, V., Luyt, A.S., Thermal and mechanical properties of cross-linked and uncross-linked linear low-density polyethylene-wax blends, (2003) Polymer Degradation and Stability, 79 (1), pp. 53-59.<\/li>\n<\/ol>\n<ol start=\"76\">\n<li>Nov\u00e1k, I., Krupa, I., Chod\u00e1k, I., Investigation of the correlation between electrical conductivity and elongation at break in polyurethane-based adhesives, (2002) Synthetic Metals, 131 (1-3), pp. 93-98.<\/li>\n<\/ol>\n<ol start=\"77\">\n<li>Nov\u00e1k, I., Krupa, I., Chod\u00e1k, I., Relation between electrical and mechanical properties in polyurethane\/carbon black adhesives, (2002) Journal of Materials Science Letters, 21 (13), pp. 1039-1041.<\/li>\n<\/ol>\n<ol start=\"78\">\n<li>Krupa, I., Luyt, A.S., Cross-linking of LDPE\/wax blends in the presence of dicumyl peroxide,(2002) South African Journal of Chemistry, 55, pp. 34-42.<\/li>\n<\/ol>\n<ol start=\"79\">\n<li>Luyt, A.S., Krupa, I., PE\/wax blends: Interesting observations, (2002) Macromolecular Symposia, 178, pp. 109-116.<\/li>\n<\/ol>\n<ol start=\"80\">\n<li>Mtshali, T.N., Krupa, I., Luyt, A.S., The effect of cross-linking on the thermal properties of LDPE\/wax blends, (2001) Thermochimica Acta, 380 (1), pp. 47-54.<\/li>\n<\/ol>\n<ol start=\"81\">\n<li>Krupa, I., Chodak, I., Physical properties of thermoplastic\/graphite composites, (2001) European Polymer Journal, 37 (11), pp. 2159-2168.<\/li>\n<\/ol>\n<ol start=\"82\">\n<li>Krupa, I., Luyt, A.S., Physical properties of blends of LLDPE and an oxidized paraffin wax, (2001) Polymer, 42 (17), pp. 7285-7289.<\/li>\n<\/ol>\n<ol start=\"83\">\n<li>Krupa, I., Luyt, A.S., Thermal and mechanical properties of extruded LLDPE\/wax blends, (2001) Polymer Degradation and Stability, 73 (1), pp. 157-161.<\/li>\n<\/ol>\n<ol start=\"84\">\n<li>Krupa, I., Luyt, A., Thermal properties of isotactic polypropylene degraded with gamma irradiation, (2001) Polymer Degradation and Stability, 72 (3), pp. 505-508.<\/li>\n<\/ol>\n<ol start=\"85\">\n<li>Krupa, I., Luyt, A.S., Thermal properties of polypropylene\/wax blends, (2001) Thermochimica Acta, 372 (1-2), pp. 137-141.<\/li>\n<\/ol>\n<ol start=\"86\">\n<li>Krupa, I., Luyt, A.S., Thermal and mechanical properties of LLDPE cross-linked with gamma radiation, (2001) Polymer Degradation and Stability, 71 (3), pp. 361-366.<\/li>\n<\/ol>\n<ol start=\"87\">\n<li>Krupa, I., Luyt, A.S., Thermal properties of uncross-linked and cross-linked LLDPE\/wax blends, (2000) Polymer Degradation and Stability, 70 (1), pp. 111-117.<\/li>\n<\/ol>\n<ol start=\"88\">\n<li>Lac\u00edk, I., Krupa, I., Stach, M., Ku\u010dma, A., Jur\u010diov\u00e1, J., Chod\u00e1k, I., Thermal lag and its practical consequence in the dynamic mechanical analysis of polymers, (2000) Polymer Testing, 19 (7), pp. 755-771.<\/li>\n<\/ol>\n<ol start=\"89\">\n<li>Chodak, I., Krupa, I.&#8217;Percolation effect&#8217; and mechanical behavior of carbon black filled polyethylene, (1999) Journal of Materials Science Letters, 18 (18), pp. 1457-1459.<\/li>\n<\/ol>\n<ol start=\"90\">\n<li>Krupa, I., Chodak, I., The effect of matrix-filler interactions on thermal capacity of LDPE\/graphite composites, (1998) Journal of Macromolecular Science &#8211; Pure and Applied Chemistry, 35 (7-8), pp. 1159-1164.<\/li>\n<\/ol>\n<p><strong>Conference proceedings\u00a0 referred in SCOPUS<\/strong><\/p>\n<ol>\n<li>Popelka, A., Krupa, I., Nov\u00e1k, I., Ouederni, M., Abdulaqder, F., Al-Yazedi, S., Al-Gunaid, T., Al-Senani, T., Adhesion improvement between polyethylene and aluminum using eco-friendly plasma treatment, (2015) Proceedings of the TMS Middle East &#8211; Mediterranean Materials Congress on Energy and Infrastructure Systems, MEMA 2015, pp. 267-271.<\/li>\n<\/ol>\n<ol start=\"2\">\n<li>Sobolciak, P., Karkri, M., Krupa, I., Al Maadeed, M., Storage and release of thermal energy of phase change materials based on linear low density of polyethylene, parafin wax and expanded graphite, (2015) Proceedings of the TMS Middle East &#8211; Mediterranean Materials Congress on Energy and Infrastructure Systems, MEMA 2015, pp. 395-402.<\/li>\n<\/ol>\n<ol start=\"3\">\n<li>Torras, N., Zinoviev, K.E., Camargo, C.J., Campo, E.M., Campanella, H., Esteve, J., Marshal, J.E., Terentjev, E.M., Omastova, M., Krupa, I., Teplicky, P., Mamojka, B., Burns, P., Roder, B., Vallribera, M., Malet, R., Zuffanelli, S., Soler, V., Roig, J., Walker, N., Wenn, D., Vossen, F., Crompvoets, F.M.H., Nematic opto-mechanical actuators for the fabrication of refreshable tactile systems, (2013) 2013 Transducers and Eurosensors XXVII: The 17th International Conference on Solid-State Sensors, Actuators and Microsystems, TRANSDUCERS and EUROSENSORS 2013, art. no. 6627111, pp. 1691-1694.<\/li>\n<\/ol>\n<ol start=\"4\">\n<li>Czanikov\u00e1, K., Krupa, I., Il\u010d\u00edkov\u00e1, M., Mosn\u00e1\u010dek, J., Kas\u00e1k, P., Mi\u010du\u0161\u00edk, M., Chorv\u00e1t Jr., D., Omastov\u00e1, M., Photoactuators on the base of polymeric elastomers and multiwall carbon nanotubes, (2011) Proceedings of SPIE &#8211; The International Society for Optical Engineering, 8107, art. no. 810707.<\/li>\n<\/ol>\n<ol start=\"5\">\n<li>Valentin, M., Krupa, I., Deanko, P., \u0160est\u00e1k, J., An improvement of hydrophobicity of pes and pes\/cotton fabrics using sol-gel technology, (2011) Chemicke Listy, 105 (15 SPEC. ISSUE), p. 399.<\/li>\n<\/ol>\n<ol start=\"6\">\n<li>Kratochv\u00edla, J., Krupa, I., \u0160pit\u00e1lsk\u00fd, Z., Proke\u0161, J., Mechanical and electrical properties of composites based on low density polyethylene and expanded graphite, (2011) Chemicke Listy, 105 (15 SPEC. ISSUE).<\/li>\n<\/ol>\n<ol start=\"7\">\n<li>F\u00f6rster, T., Strohh\u00f6fer, C., Bock, K., Kasak, P., Danko, M., Kronekova, Z., Nedelcev, T., Krupa, I., Lacik, I., Biosensor for calcium based on a hydrogel optical waveguide with integrated sensor proteins, (2009) TRANSDUCERS 2009 &#8211; 15th International Conference on Solid-State Sensors, Actuators and Microsystems, art. no. 5285877, pp. 1218-1221.<\/li>\n<\/ol>\n<ol start=\"8\">\n<li>Boudenne, A., Krupa, I., Ibos, L., Thermophysical properties of polyethylene filled with silver coated polyamide particles, (2008) Proceedings of the 29th International Thermal Conductivity Conference, ITCC29 and the Proceedings of the 17th International Thermal Expansion Symposium, ITES17, pp. 229-238.<\/li>\n<\/ol>\n<ol start=\"9\">\n<li>Mosn\u00e1\u010dek, J., Il\u010d\u00edkov\u00e1, M., Chorv\u00e1t, D., Czanikov\u00e1, K., Krupa, I., Photoactuation behavior of styrene-b-isoprene-b-styrene filled with covalently modified carbon nanotubes, (2012) AIP Conference Proceedings, 1459 (1), pp. 193-195.<\/li>\n<\/ol>\n<p><strong>Other papers \u00a0<\/strong><\/p>\n<ol>\n<li>Krupa, I., Some aspects of the modeling of thermal conductivity of polymeric composites \u00a0(Niektor\u00e9 aspekty modelovania tepelnej vodivosti polym\u00e9rnych\u00a0 kompozitov),\u00a0 (2001)Plasty a Kau\u010duk, 38(9) , 260 \u2013 263.\u00a0 [in Slovak]<\/li>\n<li>Krupa, I., Thermal conductivity of thermoplastics filled with electrically conductive carbon black \u00a0( Tepeln\u00e1 vodivos\u0165 termoplastov plnen\u00fdch elektrovodiv\u00fdmi\u00a0 sadzami), (2001)\u00a0 Plasty a Kau\u010duk, 38(10), 298 \u2013 30.\u00a0 [in Slovak]<\/li>\n<\/ol>\n<ol start=\"3\">\n<li>Krupa, I., Application of selected models to the thermal conductivity of thermoplastics filled with graphite \u00a0(Aplik\u00e1cia vybran\u00fdch modelov na tepeln\u00fa vodivos\u0165\u00a0 termoplastov plnen\u00fdch grafitom), (2001)\u00a0 Plasty a Kau\u010duk,\u00a0 38(12),\u00a0 356-358 (2001)\u00a0 [in Slovak]<\/li>\n<\/ol>\n<ol start=\"4\">\n<li>Nedel\u010dev, T., Krupa, I., Hybrid organic-inorganic nanocomposites based on the sol-gel processes, prepared by the use of\u00a0 organofunctional silanes (Hybridn\u00e9 organicko-anorganick\u00e9 nanokompozitn\u00e9 materi\u00e1ly na b\u00e1ze s\u00f3l-g\u00e9l procesov, pripraven\u00e9 vyu\u017eit\u00edm organofunk\u010dn\u00fdch sil\u00e1nov), (2006) Plasty a Kau\u010duk, 43(5-6), 13-20 (2006) [in Slovak]<\/li>\n<\/ol>\n<ol start=\"5\">\n<li>Tavman, I., \u00c7e\u00e7en, V., \u00d6zdemir, I., Turgut, A. , Krupa, I., Omastova, M., Novak, I., Preparation and characterization of highly electrically and thermally conductive polymeric nanocomposites, (2009) Archives of Materials Science and Engineering , 40(2), 84-88.<\/li>\n<\/ol>\n<ol start=\"6\">\n<li>Boudenne, A., Krupa, I., Ibos, L., Thermophysical properties of polyethylene filled with silver coated polyamide particles, Proceedings of the 29th International Thermal Conductivity Conference, ITCC29 and the Proceedings of the 17th International Thermal Expansion Symposium, ITES17 , 229-238 (2008)<\/li>\n<\/ol>\n<ol start=\"7\">\n<li>Hebeish, A., Ramadan, M., Montaser, A.S., Krupa, I., Farag,\u00a0 M.,Molecular characteristics and antibacterial activity of alginate beads coated chitosan polyacrylonitrile copolymer loaded by silver nanoparticles(2015) Journal of Scientific Research&amp; Reports, 5(6), 479 &#8211; 488.<\/li>\n<\/ol>\n<p><strong>\u00a0Book Chapters<\/strong><\/p>\n<ol>\n<li>Handbook of Multiphase Polymer Systems, Eds. Boudenne, A., Ibos, L., Candau, Y. Thomas, S. in Krupa, I., Proke\u0161, J.,\u00a0 Krivka, I.,\u00a0 \u0160pitalsk\u00fd, Z.\u00a0 Electrically conductive polymeric composites and nanocomposites, (2011)\u00a0 \u00a0\u00a0John Wiley 7 Sons, Ltd.,\u00a0 pp. 425-455.<\/li>\n<li>Soreto Teixeira, S., Gra\u00e7a, M., Dionisio, M., Ilc\u00edkova, M., Ilc\u00edkova, M., Krupa, I., Mosnacek, J., Spitalsky, Z., Krupa, I., Costa, L.C., Nanoparticles dispersed in a styrene-isoprene-styrene copolymer matrix, (2015) NATO Science for Peace and Security Series A: Chemistry and Biology, 39, pp. 273-279.<\/li>\n<\/ol>\n<p>&nbsp;<\/p>\n<p><strong>\u00a0<\/strong><\/p>\n","protected":false},"excerpt":{"rendered":"<p>&nbsp; Sobolciak, P., Karkri, M., Al-Maadeed, M.A., Krupa, I., Thermal characterization of phase change materials based on linear low-density polyethylene, [&hellip;]<\/p>\n","protected":false},"author":300,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"page-publications.php","meta":[],"_links":{"self":[{"href":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/wp-json\/wp\/v2\/pages\/8"}],"collection":[{"href":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/wp-json\/wp\/v2\/users\/300"}],"replies":[{"embeddable":true,"href":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/wp-json\/wp\/v2\/comments?post=8"}],"version-history":[{"count":4,"href":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/wp-json\/wp\/v2\/pages\/8\/revisions"}],"predecessor-version":[{"id":37,"href":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/wp-json\/wp\/v2\/pages\/8\/revisions\/37"}],"wp:attachment":[{"href":"http:\/\/qufaculty.qu.edu.qa\/igor-krupa\/wp-json\/wp\/v2\/media?parent=8"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}