Balanč, Bojana

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  • Balanč, Bojana (5)

Author's Bibliography

Polymer-Lipid Matrices based on Carboxymethyl Cellulose/Solagum and Liposomes for Controlled Release of Folic Acid

Batinić, Petar M.; Đorđević, Verica B.; Obradović, Nataša; Krstić, Aleksandar D.; Stevanović, Sanja I.; Balanč, Bojana; Marković, Smilja; Pjanović, Rada V.; Mijin, Dušan Ž.; Bugarski, Branko M.

(2023)

TY  - JOUR
AU  - Batinić, Petar M.
AU  - Đorđević, Verica B.
AU  - Obradović, Nataša
AU  - Krstić, Aleksandar D.
AU  - Stevanović, Sanja I.
AU  - Balanč, Bojana
AU  - Marković, Smilja
AU  - Pjanović, Rada V.
AU  - Mijin, Dušan Ž.
AU  - Bugarski, Branko M.
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10851
AB  - Liposome-encapsulated folic acid is incorporated into the films made from sodium carboxymethyl cellulose (CMC) (2 mas%) and a mixture of CMC and solagum (9:1 w/w) using the film-forming cast solution method. Histidine is used to increase solubility for folic acid in liposomes (1–5 mg mL−1), and propylene glycol is used as a film plasticizer (2.6 mas%). The obtained films (50–60 µm tick) containing 3.12–20.19 mg of folic acid per gram of film are envisaged to be used as patches for transdermal delivery of folic acid. Therefore, some physical, mechanical, release and structural attributes of the films are scrutinized. Folic acid gives yellow color to the films and contributes to stronger chemical bonds which result in improved strength of the film. Liposomes prolong the release of folic acid from films to 24 h without adverse effects on mechanical properties of the films, but degrade homogeneity of the films, which can be ascribed to its agglomeration within the film matrix as revealed by atomic force microscopy. According to the release at pH 5.5, the film formulation based on a blend of CMC and solagum containing 3 mg mL−1 liposome-encapsulated folic acid is recommended. Practical Application: Folic acid is effective in reducing oxidative stress levels in the skin and neutralizing the harmful free radicals and is also essential for various metabolic reactions in the body. However, the limited solubility of folic acid linked with its poor absorption in an organism, low storage stability, short half-life upon oral consumption, specific food preferences of some people, extensive liver metabolism, and pregnancy-induced vomiting point to a large potential in transdermal usage of folic acid. This has motivated us to design new multicomponent polymer-lipid systems as an alternative solution to overcome some of these drawbacks. The results obtained for these multicomponent films pointed to their potential for prolonged release of folic acid to 24 h, which can also be useful for scientists interested in encapsulating similar poorly soluble compounds in CMC patches. The finding can be also valuable information for pharmaceutical manufacturers and scientists worldwide.
T2  - European Journal of Lipid Science and Technology
T1  - Polymer-Lipid Matrices based on Carboxymethyl Cellulose/Solagum and Liposomes for Controlled Release of Folic Acid
SP  - 2200169
DO  - 10.1002/ejlt.202200169
ER  - 
@article{
author = "Batinić, Petar M. and Đorđević, Verica B. and Obradović, Nataša and Krstić, Aleksandar D. and Stevanović, Sanja I. and Balanč, Bojana and Marković, Smilja and Pjanović, Rada V. and Mijin, Dušan Ž. and Bugarski, Branko M.",
year = "2023",
abstract = "Liposome-encapsulated folic acid is incorporated into the films made from sodium carboxymethyl cellulose (CMC) (2 mas%) and a mixture of CMC and solagum (9:1 w/w) using the film-forming cast solution method. Histidine is used to increase solubility for folic acid in liposomes (1–5 mg mL−1), and propylene glycol is used as a film plasticizer (2.6 mas%). The obtained films (50–60 µm tick) containing 3.12–20.19 mg of folic acid per gram of film are envisaged to be used as patches for transdermal delivery of folic acid. Therefore, some physical, mechanical, release and structural attributes of the films are scrutinized. Folic acid gives yellow color to the films and contributes to stronger chemical bonds which result in improved strength of the film. Liposomes prolong the release of folic acid from films to 24 h without adverse effects on mechanical properties of the films, but degrade homogeneity of the films, which can be ascribed to its agglomeration within the film matrix as revealed by atomic force microscopy. According to the release at pH 5.5, the film formulation based on a blend of CMC and solagum containing 3 mg mL−1 liposome-encapsulated folic acid is recommended. Practical Application: Folic acid is effective in reducing oxidative stress levels in the skin and neutralizing the harmful free radicals and is also essential for various metabolic reactions in the body. However, the limited solubility of folic acid linked with its poor absorption in an organism, low storage stability, short half-life upon oral consumption, specific food preferences of some people, extensive liver metabolism, and pregnancy-induced vomiting point to a large potential in transdermal usage of folic acid. This has motivated us to design new multicomponent polymer-lipid systems as an alternative solution to overcome some of these drawbacks. The results obtained for these multicomponent films pointed to their potential for prolonged release of folic acid to 24 h, which can also be useful for scientists interested in encapsulating similar poorly soluble compounds in CMC patches. The finding can be also valuable information for pharmaceutical manufacturers and scientists worldwide.",
journal = "European Journal of Lipid Science and Technology",
title = "Polymer-Lipid Matrices based on Carboxymethyl Cellulose/Solagum and Liposomes for Controlled Release of Folic Acid",
pages = "2200169",
doi = "10.1002/ejlt.202200169"
}
Batinić, P. M., Đorđević, V. B., Obradović, N., Krstić, A. D., Stevanović, S. I., Balanč, B., Marković, S., Pjanović, R. V., Mijin, D. Ž.,& Bugarski, B. M.. (2023). Polymer-Lipid Matrices based on Carboxymethyl Cellulose/Solagum and Liposomes for Controlled Release of Folic Acid. in European Journal of Lipid Science and Technology, 2200169.
https://doi.org/10.1002/ejlt.202200169
Batinić PM, Đorđević VB, Obradović N, Krstić AD, Stevanović SI, Balanč B, Marković S, Pjanović RV, Mijin DŽ, Bugarski BM. Polymer-Lipid Matrices based on Carboxymethyl Cellulose/Solagum and Liposomes for Controlled Release of Folic Acid. in European Journal of Lipid Science and Technology. 2023;:2200169.
doi:10.1002/ejlt.202200169 .
Batinić, Petar M., Đorđević, Verica B., Obradović, Nataša, Krstić, Aleksandar D., Stevanović, Sanja I., Balanč, Bojana, Marković, Smilja, Pjanović, Rada V., Mijin, Dušan Ž., Bugarski, Branko M., "Polymer-Lipid Matrices based on Carboxymethyl Cellulose/Solagum and Liposomes for Controlled Release of Folic Acid" in European Journal of Lipid Science and Technology (2023):2200169,
https://doi.org/10.1002/ejlt.202200169 . .
1

Structure and properties of ZnO/ZnMn2O4 composite obtained by thermal decomposition of terephthalate precursor: Scientific paper

Radovanović, Lidija; Radovanović, Željko; Simović, Bojana; Vasić, Milica V.; Balanč, Bojana; Dapčević, Aleksandra; Dramićanin, Miroslav; Rogan, Jelena

(2023)

TY  - JOUR
AU  - Radovanović, Lidija
AU  - Radovanović, Željko
AU  - Simović, Bojana
AU  - Vasić, Milica V.
AU  - Balanč, Bojana
AU  - Dapčević, Aleksandra
AU  - Dramićanin, Miroslav
AU  - Rogan, Jelena
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10873
AB  - A biphasic [Mn(dipya)(H2O)4](tpht)/{[Zn(dipya)(tpht)]·H2O}n com­plex material, I (dipya = 2,2’-dipyridylamine, tpht2– = dianion of terephthalatic acid) was synthesized by ligand exchange reaction and characterized by XRPD and FTIR spectroscopy. A ZnO/ZnMn2O4 composite, II, has been prepared via thermal decomposition of I in an air atmosphere at 450 °C. XRPD, FTIR and FESEM analyses of II revealed the simultaneous presence of spherical nano­particles of wurtzite ZnO and elongated nanoparticles of spinel ZnMn2O4. The specific surface area of II was determined by the BET method, whereas the volume and average size of the mesopores were calculated in accordance with the BJH method. The measurements of the mean size, polydispersity index and zeta potential showed colloidal instability of II. Two band gap values of 2.4 and 3.3 eV were determined using UV–Vis diffuse reflectance spectroscopy, while the measurements of photoluminescence revealed that II is active in the blue region of the visible spectrum. Testing of composite II as a pigmentary material showed that it can be used for the colouring of a ceramic glaze.
T2  - Journal of the Serbian Chemical Society
T1  - Structure and properties of ZnO/ZnMn2O4 composite obtained by thermal decomposition of terephthalate precursor: Scientific paper
VL  - 88
IS  - 3
DO  - 10.2298/JSC221102090R
ER  - 
@article{
author = "Radovanović, Lidija and Radovanović, Željko and Simović, Bojana and Vasić, Milica V. and Balanč, Bojana and Dapčević, Aleksandra and Dramićanin, Miroslav and Rogan, Jelena",
year = "2023",
abstract = "A biphasic [Mn(dipya)(H2O)4](tpht)/{[Zn(dipya)(tpht)]·H2O}n com­plex material, I (dipya = 2,2’-dipyridylamine, tpht2– = dianion of terephthalatic acid) was synthesized by ligand exchange reaction and characterized by XRPD and FTIR spectroscopy. A ZnO/ZnMn2O4 composite, II, has been prepared via thermal decomposition of I in an air atmosphere at 450 °C. XRPD, FTIR and FESEM analyses of II revealed the simultaneous presence of spherical nano­particles of wurtzite ZnO and elongated nanoparticles of spinel ZnMn2O4. The specific surface area of II was determined by the BET method, whereas the volume and average size of the mesopores were calculated in accordance with the BJH method. The measurements of the mean size, polydispersity index and zeta potential showed colloidal instability of II. Two band gap values of 2.4 and 3.3 eV were determined using UV–Vis diffuse reflectance spectroscopy, while the measurements of photoluminescence revealed that II is active in the blue region of the visible spectrum. Testing of composite II as a pigmentary material showed that it can be used for the colouring of a ceramic glaze.",
journal = "Journal of the Serbian Chemical Society",
title = "Structure and properties of ZnO/ZnMn2O4 composite obtained by thermal decomposition of terephthalate precursor: Scientific paper",
volume = "88",
number = "3",
doi = "10.2298/JSC221102090R"
}
Radovanović, L., Radovanović, Ž., Simović, B., Vasić, M. V., Balanč, B., Dapčević, A., Dramićanin, M.,& Rogan, J.. (2023). Structure and properties of ZnO/ZnMn2O4 composite obtained by thermal decomposition of terephthalate precursor: Scientific paper. in Journal of the Serbian Chemical Society, 88(3).
https://doi.org/10.2298/JSC221102090R
Radovanović L, Radovanović Ž, Simović B, Vasić MV, Balanč B, Dapčević A, Dramićanin M, Rogan J. Structure and properties of ZnO/ZnMn2O4 composite obtained by thermal decomposition of terephthalate precursor: Scientific paper. in Journal of the Serbian Chemical Society. 2023;88(3).
doi:10.2298/JSC221102090R .
Radovanović, Lidija, Radovanović, Željko, Simović, Bojana, Vasić, Milica V., Balanč, Bojana, Dapčević, Aleksandra, Dramićanin, Miroslav, Rogan, Jelena, "Structure and properties of ZnO/ZnMn2O4 composite obtained by thermal decomposition of terephthalate precursor: Scientific paper" in Journal of the Serbian Chemical Society, 88, no. 3 (2023),
https://doi.org/10.2298/JSC221102090R . .

High-performance laminate material based on polyurethane and epoxide reinforced by silica particles from rice husk used for intelligent pedestrian crossings

Tomić, Nataša Z.; Marinković, Aleksandar D.; Balanč, Bojana; Obradović, Vera; Pavlović, Vladimir B.; Manojlović, Vaso; Vuksanović, Marija M.

(2021)

TY  - JOUR
AU  - Tomić, Nataša Z.
AU  - Marinković, Aleksandar D.
AU  - Balanč, Bojana
AU  - Obradović, Vera
AU  - Pavlović, Vladimir B.
AU  - Manojlović, Vaso
AU  - Vuksanović, Marija M.
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9517
AB  - Intelligent pedestrian crossings were made with the aim to increase pedestrian safety at poorly lit locations. New technologies include the design of polymer materials that have high performance by optimizing properties such as compression, tensile and impact strengths, wear resistance, hardness and transparency. The desired properties are set up to face the demands of a heavy daily traffic load and enable the functionality. Laminate material consists of the epoxy composite reinforced with silica (SiO2) derived from rice husk waste and a protective thermoplastic polyurethane layer. The top layer of the laminate material is a transparent thermoplastic polyurethane (TPU) serving as a protective layer with high wear resistance and good adhesion with epoxy composite. Silica obtained from rice husk waste was used in reinforcing of the epoxide in order to improve the mechanical properties, diffuse the light, improve the adhesion with TPU and decrease the production costs. Micro-Vickers hardness of the epoxy composite was increased by 70% with the addition of 15 wt% of SiO2. Impact energy of the epoxy composite with 15 wt% of SiO2 was increased by 272.9% after adding the TPU layer. Compressive strength of the epoxy resin is improved by 16.2% by reinforcement with 15 wt% of SiO2, while the laminate composite material showed 207% higher compressive strength than the commonly used asphalt pavement. Moreover, the addition of 15 wt% of SiO2 improved the adhesion between epoxy composite and TPU layer (11.2%). Thus, obtained laminated material made of the epoxy composite with 15 wt% of SiO2 (obtained from rice husk waste) and TPU598 showed mechanical properties and LED light transmission/diffusion appropriate for application in the intelligent pedestrian crossings. © 2021, Iran Polymer and Petrochemical Institute.
T2  - Iranian Polymer Journal (English Edition)
T1  - High-performance laminate material based on polyurethane and epoxide reinforced by silica particles from rice husk used for intelligent pedestrian crossings
VL  - 30
IS  - 3
SP  - 319
EP  - 330
DO  - 10.1007/s13726-020-00894-6
ER  - 
@article{
author = "Tomić, Nataša Z. and Marinković, Aleksandar D. and Balanč, Bojana and Obradović, Vera and Pavlović, Vladimir B. and Manojlović, Vaso and Vuksanović, Marija M.",
year = "2021",
abstract = "Intelligent pedestrian crossings were made with the aim to increase pedestrian safety at poorly lit locations. New technologies include the design of polymer materials that have high performance by optimizing properties such as compression, tensile and impact strengths, wear resistance, hardness and transparency. The desired properties are set up to face the demands of a heavy daily traffic load and enable the functionality. Laminate material consists of the epoxy composite reinforced with silica (SiO2) derived from rice husk waste and a protective thermoplastic polyurethane layer. The top layer of the laminate material is a transparent thermoplastic polyurethane (TPU) serving as a protective layer with high wear resistance and good adhesion with epoxy composite. Silica obtained from rice husk waste was used in reinforcing of the epoxide in order to improve the mechanical properties, diffuse the light, improve the adhesion with TPU and decrease the production costs. Micro-Vickers hardness of the epoxy composite was increased by 70% with the addition of 15 wt% of SiO2. Impact energy of the epoxy composite with 15 wt% of SiO2 was increased by 272.9% after adding the TPU layer. Compressive strength of the epoxy resin is improved by 16.2% by reinforcement with 15 wt% of SiO2, while the laminate composite material showed 207% higher compressive strength than the commonly used asphalt pavement. Moreover, the addition of 15 wt% of SiO2 improved the adhesion between epoxy composite and TPU layer (11.2%). Thus, obtained laminated material made of the epoxy composite with 15 wt% of SiO2 (obtained from rice husk waste) and TPU598 showed mechanical properties and LED light transmission/diffusion appropriate for application in the intelligent pedestrian crossings. © 2021, Iran Polymer and Petrochemical Institute.",
journal = "Iranian Polymer Journal (English Edition)",
title = "High-performance laminate material based on polyurethane and epoxide reinforced by silica particles from rice husk used for intelligent pedestrian crossings",
volume = "30",
number = "3",
pages = "319-330",
doi = "10.1007/s13726-020-00894-6"
}
Tomić, N. Z., Marinković, A. D., Balanč, B., Obradović, V., Pavlović, V. B., Manojlović, V.,& Vuksanović, M. M.. (2021). High-performance laminate material based on polyurethane and epoxide reinforced by silica particles from rice husk used for intelligent pedestrian crossings. in Iranian Polymer Journal (English Edition), 30(3), 319-330.
https://doi.org/10.1007/s13726-020-00894-6
Tomić NZ, Marinković AD, Balanč B, Obradović V, Pavlović VB, Manojlović V, Vuksanović MM. High-performance laminate material based on polyurethane and epoxide reinforced by silica particles from rice husk used for intelligent pedestrian crossings. in Iranian Polymer Journal (English Edition). 2021;30(3):319-330.
doi:10.1007/s13726-020-00894-6 .
Tomić, Nataša Z., Marinković, Aleksandar D., Balanč, Bojana, Obradović, Vera, Pavlović, Vladimir B., Manojlović, Vaso, Vuksanović, Marija M., "High-performance laminate material based on polyurethane and epoxide reinforced by silica particles from rice husk used for intelligent pedestrian crossings" in Iranian Polymer Journal (English Edition), 30, no. 3 (2021):319-330,
https://doi.org/10.1007/s13726-020-00894-6 . .
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Uticaj modifikacije čestica AL2O3 na toplotna i mehanička svojstva kompozita na bazi akrilata

Tomić, Nataša Z.; Vuksanović, Marija M.; Balanč, Bojana; Stević, Zoran; Jančić-Heinemann, Radmila; Marinković, Aleksandar D.; Putić, Slaviša

(Beograd : Savez mašinskih i elektrotehničkih inženjera i tehničara Srbije - SMEITS, 2019)

TY  - CONF
AU  - Tomić, Nataša Z.
AU  - Vuksanović, Marija M.
AU  - Balanč, Bojana
AU  - Stević, Zoran
AU  - Jančić-Heinemann, Radmila
AU  - Marinković, Aleksandar D.
AU  - Putić, Slaviša
PY  - 2019
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/11396
AB  - Aluminijum oksid (Al2O3) je keramički materijal koji ima izuzetna mehanička, fizička i hemijska svojstva. Zbog svojih izuzetnih hemijskih svojstava, aluminijum oksid se koristi u kompozitima kao ojačanje i kao materijali za primenu u visokim temperaturama. U kompozitnim materijalima od posebnog interesa su različite strukture aluminijum oksida koje se mogu dobiti termičkom obradom. Cilj ovog rada bio je da se napravi kompozitni materijal sa matricom od PMMA itakonatnog kopolimera i da se ispitaju termička svojstva, u zavisnosti od dodavanja različitih punioca sa modifikacijom površine. Modul elastičnosti i čvrstoća PMMA se smanjuju dodavanjem itakonata u matricu. Čestice na bazi aluminijum oksida sa površinom modifikovanom sa organosilanom – 3-aminopropil-trimetoksilanom (AM) i u drugom stupnju sa metil estrima masnih kiselina lanenog ulja (biodizel-BD) korišćene su kao ojačanja. Čestice sa površinskom modifikacijom uspostavljaju bolju vezu sa polimernom matricom putem kovalentnih i vodoničnih veza i dipol-dipol interakcija. Efikasnim dispergovanjem čestica u matrici se postiže i poboljšan prenos opterećenja kroz matricu koji je praćem putem termovizijske kamere. Termogrami tokom testa na zatezanje ukazuju na razlike u temperaturama koje se javljaju u zoni loma kompozitnih materijala. Temperatura u zoni loma je u uskoj vezi sa efikasnošću prenosa opterećenja i temperaturne provodljivosti samog materijala. Mehanička svojstva materijala se poboljšavaju dodavanjem neorganskih čestica na bazi alminijum oksida sa aktiviranom površinom i na taj način stvoriti novi kompozitni materijal sa poboljšanjim mehaničkim i termičkim svojstava.
AB  - Aluminum oxide (Al2O3) is a ceramic material that has exceptional mechanical, physical and chemical properties. Due to its extraordinary chemical properties, aluminum oxide is used in composites as reinforcement and as material in high temperature applications. In composite materials of particular interest are different structures of aluminum oxide, which can be obtained by thermal treatment. The aim of this article was to make a composite material with a matrix made from PMMA itaconate copolymer and to examine the thermal properties, depending on the addition of various fillers with surface modification. Modulus of elasticity and the strengths of PMMA are in decrease by adding the itaconate to the matrix. Aluminum oxide based particles were used as reinforcement with a modified organosilane-3-aminopropyl-trimethoxylane (AM) surface and in the second stage with fatty acid fatty acid methyl esters (biodiesel-BD). Surface modification particles establish a better bond with the polymer matrix through covalent and hydrogen bonds and dipol-dipole interactions. Efficient dispersion of particles in the matrix also improves the transmission of the load through the matrix, which is followed by a thermionic camera. Thermograms during tensile test indicate differences in temperatures occurring in the fracture zone of composite materials. The temperature in the fracture zone is closely related to the efficiency of the load transfer and the temperature conductivity of the material itself. The mechanical properties of the material are improved by adding inorganic particles based on the activated surface of aluminum oxide, thereby creating a new composite material with improved mechanical and thermal properties.
PB  - Beograd : Savez mašinskih i elektrotehničkih inženjera i tehničara Srbije - SMEITS
C3  - 7th International Conference on Renewable Electrical Power Sources : the book of abstracts : October 17-18, Belgrade
T1  - Uticaj modifikacije čestica AL2O3 na toplotna i mehanička svojstva kompozita na bazi akrilata
T1  - Effect of Al[2]O[3] particles modification on the thermal and mechanical properties of the acrylate based composites
SP  - 113
EP  - 117
UR  - https://hdl.handle.net/21.15107/rcub_vinar_11396
ER  - 
@conference{
author = "Tomić, Nataša Z. and Vuksanović, Marija M. and Balanč, Bojana and Stević, Zoran and Jančić-Heinemann, Radmila and Marinković, Aleksandar D. and Putić, Slaviša",
year = "2019",
abstract = "Aluminijum oksid (Al2O3) je keramički materijal koji ima izuzetna mehanička, fizička i hemijska svojstva. Zbog svojih izuzetnih hemijskih svojstava, aluminijum oksid se koristi u kompozitima kao ojačanje i kao materijali za primenu u visokim temperaturama. U kompozitnim materijalima od posebnog interesa su različite strukture aluminijum oksida koje se mogu dobiti termičkom obradom. Cilj ovog rada bio je da se napravi kompozitni materijal sa matricom od PMMA itakonatnog kopolimera i da se ispitaju termička svojstva, u zavisnosti od dodavanja različitih punioca sa modifikacijom površine. Modul elastičnosti i čvrstoća PMMA se smanjuju dodavanjem itakonata u matricu. Čestice na bazi aluminijum oksida sa površinom modifikovanom sa organosilanom – 3-aminopropil-trimetoksilanom (AM) i u drugom stupnju sa metil estrima masnih kiselina lanenog ulja (biodizel-BD) korišćene su kao ojačanja. Čestice sa površinskom modifikacijom uspostavljaju bolju vezu sa polimernom matricom putem kovalentnih i vodoničnih veza i dipol-dipol interakcija. Efikasnim dispergovanjem čestica u matrici se postiže i poboljšan prenos opterećenja kroz matricu koji je praćem putem termovizijske kamere. Termogrami tokom testa na zatezanje ukazuju na razlike u temperaturama koje se javljaju u zoni loma kompozitnih materijala. Temperatura u zoni loma je u uskoj vezi sa efikasnošću prenosa opterećenja i temperaturne provodljivosti samog materijala. Mehanička svojstva materijala se poboljšavaju dodavanjem neorganskih čestica na bazi alminijum oksida sa aktiviranom površinom i na taj način stvoriti novi kompozitni materijal sa poboljšanjim mehaničkim i termičkim svojstava., Aluminum oxide (Al2O3) is a ceramic material that has exceptional mechanical, physical and chemical properties. Due to its extraordinary chemical properties, aluminum oxide is used in composites as reinforcement and as material in high temperature applications. In composite materials of particular interest are different structures of aluminum oxide, which can be obtained by thermal treatment. The aim of this article was to make a composite material with a matrix made from PMMA itaconate copolymer and to examine the thermal properties, depending on the addition of various fillers with surface modification. Modulus of elasticity and the strengths of PMMA are in decrease by adding the itaconate to the matrix. Aluminum oxide based particles were used as reinforcement with a modified organosilane-3-aminopropyl-trimethoxylane (AM) surface and in the second stage with fatty acid fatty acid methyl esters (biodiesel-BD). Surface modification particles establish a better bond with the polymer matrix through covalent and hydrogen bonds and dipol-dipole interactions. Efficient dispersion of particles in the matrix also improves the transmission of the load through the matrix, which is followed by a thermionic camera. Thermograms during tensile test indicate differences in temperatures occurring in the fracture zone of composite materials. The temperature in the fracture zone is closely related to the efficiency of the load transfer and the temperature conductivity of the material itself. The mechanical properties of the material are improved by adding inorganic particles based on the activated surface of aluminum oxide, thereby creating a new composite material with improved mechanical and thermal properties.",
publisher = "Beograd : Savez mašinskih i elektrotehničkih inženjera i tehničara Srbije - SMEITS",
journal = "7th International Conference on Renewable Electrical Power Sources : the book of abstracts : October 17-18, Belgrade",
title = "Uticaj modifikacije čestica AL2O3 na toplotna i mehanička svojstva kompozita na bazi akrilata, Effect of Al[2]O[3] particles modification on the thermal and mechanical properties of the acrylate based composites",
pages = "113-117",
url = "https://hdl.handle.net/21.15107/rcub_vinar_11396"
}
Tomić, N. Z., Vuksanović, M. M., Balanč, B., Stević, Z., Jančić-Heinemann, R., Marinković, A. D.,& Putić, S.. (2019). Uticaj modifikacije čestica AL2O3 na toplotna i mehanička svojstva kompozita na bazi akrilata. in 7th International Conference on Renewable Electrical Power Sources : the book of abstracts : October 17-18, Belgrade
Beograd : Savez mašinskih i elektrotehničkih inženjera i tehničara Srbije - SMEITS., 113-117.
https://hdl.handle.net/21.15107/rcub_vinar_11396
Tomić NZ, Vuksanović MM, Balanč B, Stević Z, Jančić-Heinemann R, Marinković AD, Putić S. Uticaj modifikacije čestica AL2O3 na toplotna i mehanička svojstva kompozita na bazi akrilata. in 7th International Conference on Renewable Electrical Power Sources : the book of abstracts : October 17-18, Belgrade. 2019;:113-117.
https://hdl.handle.net/21.15107/rcub_vinar_11396 .
Tomić, Nataša Z., Vuksanović, Marija M., Balanč, Bojana, Stević, Zoran, Jančić-Heinemann, Radmila, Marinković, Aleksandar D., Putić, Slaviša, "Uticaj modifikacije čestica AL2O3 na toplotna i mehanička svojstva kompozita na bazi akrilata" in 7th International Conference on Renewable Electrical Power Sources : the book of abstracts : October 17-18, Belgrade (2019):113-117,
https://hdl.handle.net/21.15107/rcub_vinar_11396 .

Synthesis, Structure, Morphology and Properties of Biphasic ZnO–ZnMn2O4

Radovanović, Lidija; Vulić, Predrag; Radovanović, Željko; Balanč, Bojana; Simović, Bojana; Zeković, Ivana Lj.; Dramićanin, Miroslav; Rogan, Jelena R.

(Belgrade : Serbian Academy of Sciences and Arts, 2018)

TY  - CONF
AU  - Radovanović, Lidija
AU  - Vulić, Predrag
AU  - Radovanović, Željko
AU  - Balanč, Bojana
AU  - Simović, Bojana
AU  - Zeković, Ivana Lj.
AU  - Dramićanin, Miroslav
AU  - Rogan, Jelena R.
PY  - 2018
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/8737
PB  - Belgrade : Serbian Academy of Sciences and Arts
C3  - Program and Book of Abstracts / First International Conference on Electron Microscopy of Nanostructures ELMINA 2018, August 27-29, 2018, Belgrade, Serbia
T1  - Synthesis, Structure, Morphology and Properties of Biphasic ZnO–ZnMn2O4
SP  - 171
EP  - 173
UR  - https://hdl.handle.net/21.15107/rcub_vinar_8737
ER  - 
@conference{
author = "Radovanović, Lidija and Vulić, Predrag and Radovanović, Željko and Balanč, Bojana and Simović, Bojana and Zeković, Ivana Lj. and Dramićanin, Miroslav and Rogan, Jelena R.",
year = "2018",
publisher = "Belgrade : Serbian Academy of Sciences and Arts",
journal = "Program and Book of Abstracts / First International Conference on Electron Microscopy of Nanostructures ELMINA 2018, August 27-29, 2018, Belgrade, Serbia",
title = "Synthesis, Structure, Morphology and Properties of Biphasic ZnO–ZnMn2O4",
pages = "171-173",
url = "https://hdl.handle.net/21.15107/rcub_vinar_8737"
}
Radovanović, L., Vulić, P., Radovanović, Ž., Balanč, B., Simović, B., Zeković, I. Lj., Dramićanin, M.,& Rogan, J. R.. (2018). Synthesis, Structure, Morphology and Properties of Biphasic ZnO–ZnMn2O4. in Program and Book of Abstracts / First International Conference on Electron Microscopy of Nanostructures ELMINA 2018, August 27-29, 2018, Belgrade, Serbia
Belgrade : Serbian Academy of Sciences and Arts., 171-173.
https://hdl.handle.net/21.15107/rcub_vinar_8737
Radovanović L, Vulić P, Radovanović Ž, Balanč B, Simović B, Zeković IL, Dramićanin M, Rogan JR. Synthesis, Structure, Morphology and Properties of Biphasic ZnO–ZnMn2O4. in Program and Book of Abstracts / First International Conference on Electron Microscopy of Nanostructures ELMINA 2018, August 27-29, 2018, Belgrade, Serbia. 2018;:171-173.
https://hdl.handle.net/21.15107/rcub_vinar_8737 .
Radovanović, Lidija, Vulić, Predrag, Radovanović, Željko, Balanč, Bojana, Simović, Bojana, Zeković, Ivana Lj., Dramićanin, Miroslav, Rogan, Jelena R., "Synthesis, Structure, Morphology and Properties of Biphasic ZnO–ZnMn2O4" in Program and Book of Abstracts / First International Conference on Electron Microscopy of Nanostructures ELMINA 2018, August 27-29, 2018, Belgrade, Serbia (2018):171-173,
https://hdl.handle.net/21.15107/rcub_vinar_8737 .