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Dive into the research topics where Anđela Pustak is active.

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Featured researches published by Anđela Pustak.


Langmuir | 2011

Polymorphism and mesomorphism of oligomeric surfactants: effect of the degree of oligomerization.

Darija Jurašin; Anđela Pustak; Ivan Habuš; Ivan Šmit; Nada Filipović-Vinceković

A series of cationic oligomeric surfactants (quaternary dodecyldimethylammonium ions with two, three, or four chains connected by an ethylene spacer at the headgroup level, abbreviated as dimer, trimer, and tetramer) were synthesized and characterized. The influence of the degree of oligomerization on their polymorphic and mesomorphic properties was investigated by means of X-ray diffraction, polarizing optical microscopy, thermogravimetry, and differential scanning calorimetry. All compounds display layered arrangements with interdigitated dodecyl chains. The increase in the degree of oligomerization increases the interlayer distance and decreases the ordering in the solid phase; whereas the dimer sample is fully crystalline with well-developed 3D ordering and the trimer and tetramer crystallize as highly ordered crystal smectic phases. The number of thermal phase transitions and sequence of phases are markedly affected by the number of dodecyl chains. Anhydrous samples exhibit polymorphism and thermotropic mesomorphism of the smectic type, with the exception of the tetramer that displays only transitions at higher temperature associated with decomposition and melting. All hydrated compounds form lyotropic mesophases showing reversible phase transitions upon heating and cooling. The sequence of liquid-crystalline phases for the dimer, typical of concentrated ionic surfactant systems, comprises a hexagonal phase at lower temperatures and a smectic phase at higher temperatures. In contrast, the trimer and tetramer reveal textures of the hexagonal phase.


Journal of Reinforced Plastics and Composites | 2014

Interfacial and mechanical properties of polypropylene/silica nano- and microcomposites

Anđela Pustak; Mirela Leskovac; Matjaž Denac; Iztok Švab; Janez Pohleven; Matjaž Makarovič; Vojko Musil; Ivan Šmit

Various silica grades differing in particle size (micro- versus nanosilica) and surface modification (untreated versus modified surface) have affected interfacial and mechanical properties of compression-molded polypropylene composites with 2, 4, 6, 8 vol% of added silica. Mechanical properties have been influenced primarily by combination of stiff fillers and tough polypropylene matrix and additionally by restructured matrix. Namely, silica particles with different surface properties have influenced nucleation and spherulite growth differently affecting thus tensile properties of the composites. All composites exhibited best tensile strength in silica content range 2–6 vol%.


Polymer-plastics Technology and Engineering | 2015

Morphology and Mechanical Properties of iPP/Silica Composites Modified with (Styrene-b-ethylene-co-butylene- b-styrene) Grafted with Maleic Anhydride

Anđela Pustak; Matjaž Denac; Mirela Leskovac; Iztok Švab; Vojko Musil; Ivan Šmit

The effects of different silica grades and elastomer content on interfacial properties, morphology and mechanical properties of polypropylene/silica 96/4 composites modified with added 5, 10, 15, and 20% of poly(styrene-b-ethylene-co-butylene-b-styrene) grafted with maleic anhydride (SEBS-g-MA) were investigated. The iPP/silica/SEBS-g-MA composites were designed by adding four silica fillers differing in size (nano- vs. micro-) and in surface properties (hydrophilic vs. hydrophobic) and SEBS-g-MA that was used as a proven effective impact modifier and compatibilizer simultaneously. The morphology of every composite was a spectrum of several morphologies rather than one exclusive morphology. Good concordance between observed and predicted morphology indicated that the morphology of a particular composite was controlled primarily by interfacial properties. Tensile and impact properties were influenced primarily by competitive effects of a stiff filler and tough SEBS-g-MA elastomer. Increased impact strength and strain at break caused by adding SEBS-g-MA indicated a significant overcoming of the elastomeric toughening effect in relation to the filler’s stiffening effect. GRAPHICAL ABSTRACT


Soft Matter | 2013

Lamellar to hexagonal columnar liquid crystalline phase transition in a catanionic surfactant mixture: dodecylammonium chloride–sodium bis(2-ethylhexyl) sulfosuccinate

Darija Jurašin; Marko Vinceković; Anđela Pustak; Ivan Šmit; Marija Bujan; Nada Filipović-Vinceković

Phase transitions from a dispersed lamellar to hexagonal liquid crystalline phase have been investigated in a catanionic surfactant mixture formed by mixing a single tailed cationic surfactant, dodecylammonium chloride, with a double tailed anionic surfactant, sodium bis(2-ethylhexyl) sulfosuccinate. Depending on the bulk composition and total surfactant concentration, mixed micelles, vesicles, lamellar and hexagonal columnar liquid crystalline phases have been identified. Differences in the geometry of the two hydrophobic chains stabilize vesicles of different shapes (spherical, tubular and pearled) relative to the liquid crystalline phase even in stoichiometric mixtures. At higher surfactant concentrations the phase transition from a dispersed lamellar to hexagonal columnar liquid crystalline phase proceeds continuously, with both phases coexisting over a range of concentrations. The transition proceeds through processes of vesicle aggregation, reorganization into multilayer sheets rolled-up into tubules, and formation of a hexagonal columnar liquid crystalline phase.


Polymer-plastics Technology and Engineering | 2018

Polypropylene Blends with m-EPR Copolymers: Structure, Morphology and Thermal Properties

Anđela Pustak; Iztok Švab; Emi Govorčin Bajsić; Matjaž Denac; Vojko Musil; Ivan Šmit

ABSTRACT The effects of different contents of two metallocene propylene-based m-EPR elastomers on structure, morphology, thermal, and dynamic mechanical properties of the isotactic polypropylene/m-EPR blends were investigated. The both m-EPR copolymers have been built in isotactic polypropylene matrix as amorphous phase. However, the nucleation effect at lowest addition (2.5 vol%) and the solidification effect along with increased m-EPR’s additions have caused changes of the crystallinity degree and the size of spherulites in the isotactic polypropylene matrix. Higher degree of miscibility/compatibility of the isotactic polypropylene/m-EPR2, with lower viscosity has been observed. Homogeneous dispersion of m-EPR particles as well as their radial distribution has been observed. GRAPHICAL ABSTRACT


Acta Chimica Slovenica | 2018

Polypropylene Blends with m-EPR Copolymers: Mechanical and Rheological Properties

Iztok Švab; Anđela Pustak; Matjaž Denac; Andrijana Sever Škapin; Mirela Leskovac; Vojko Musil; Ivan Šmit

The effects of two metallocene ethylene-propylene-based elastomers (m-EPR1 and m-EPR2) differing in molecular mass and viscosity on mechanical, rheological and interfacial properties were compared. The m-EPR elastomers were added to iPP in 2.5, 5, 10, 15, and 20 vol.%. Torque values, elongation at break and impact strength measured of the iPP/m-EPR1 blends were higher than the iPP/m-EPR2 blends due to higher molten viscosity of m-EPR1 than m-EPR2 copolymer. Slight differences in Young moduli as well as in tensile strength at yield and at break might indicate that tensile properties of iPP/m-EPR blends were not significantly affected by difference in viscosity or molecular mass, miscibility and spherulite size. Optimization diagrams indicated the metallocene m-EPR copolymers are efficient impact modifiers for polypropylene and showed good balancing of mechanical properties in iPP/m-EPR blends.


Kemija u Industriji | 2017

Utjecaj modifikacije višestjenih ugljikovih nanocjevčica na svojstva poliuretana: I. Morfologija i toplinska svojstva

Sanja Lučić Blagojević; Martina Zeljko; Anđela Pustak

Poliuretanski elastomeri su blok-kopolimeri, koji se sastoje od krutog i fleksibilnog segmenta. Zbog razlike u polarnosti odnosno termodinamičke nekompatibilnosti, ti segmenti se razdvajaju u meku i tvrdu fazu. Zahvaljujući strukturi, poliuretanski elastomeri imaju superiorna svojstva povezana s visokom tvrdoćom s obzirom na modul, visokom otpornošću na abraziju, izvrsnim mehaničkim svojstvima te biokompatibilnosti i stoga imaju iznimno široku primjenu u području adheziva, optoelektronike, biotehnologije i brojnim drugim.1,2


Journal of Applied Polymer Science | 2010

Blends of thermoplastic polyurethane and polypropylene. II. Thermal and morphological behavior

Emi Govorčin Bajsić; Anđela Pustak; Ivan Šmit; Mirela Leskovac


Journal of Applied Polymer Science | 2013

Morphology of Polypropylene/Silica Nano- and Microcomposites

Anđela Pustak; Irina Pucić; Matjaž Denac; Iztok Švab; Janez Pohleven; Vojko Musil; Ivan Šmit


Journal of Applied Polymer Science | 2012

Influence of nanosilica on the morphology, thermal and mechanical properties of polyurethane elastomer

Sanja Lučić Blagojević; Zrinka Buhin; Anđela Pustak; Ružica Lukić Kovačić

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