Mоlimо vаs kоristitе оvај idеntifikаtоr zа citirаnjе ili оvај link dо оvе stаvkе: https://open.uns.ac.rs/handle/123456789/1193
Nаziv: The influence of the nanofiller on thermal properties of thermoplastic polyurethane elastomers
Аutоri: Ristić, Ivan 
Krakovsky, Ivan
Janić, Teodora
Cakić, Suzana
Miletić, Aleksandra 
Jotanović, Milovan
Radusin, Tanja
Dаtum izdаvаnjа: 1-нов-2018
Izdаvаč: Springer Link
Čаsоpis: Journal of Thermal Analysis and Calorimetry
Sažetak: Hybrid materials based on renewable resources are under huge interest of scientist nowadays. Polymer-based hybrid materials with the addition of nanoparticles are very interesting because the addition of small amount of nanoparticles significantly improves final material’s properties. Group of polymers which is suitable for use for hybrid materials preparation are polyurethanes. Polyurethanes have wide spectra of commercial and industrial applications, but for their production petroleum-based derivative is used and big efforts are still making for changing it with components from renewable resources. Thermoplastic polyurethanes were synthesized using two types of isocyanates: isophorone diisocyanate and hexamethylene diisocyanate, and the possibility of using isosorbide, instead of butanediol, as chain extender for the synthesis of thermoplastic polyurethane elastomers was investigated. NCO/OH ratio was 1.15/1 and soft segment content 50% in all samples. Also, the influence of the addition of hydrophilic and hydrophobic silicon(IV)-oxide nanoparticles, in amounts of 0.5,1, 2, and 5%, on thermal properties of the obtained green polyurethanes is determined using DSC and TG analysis. It is shown that hydrophilic silicon(IV)-oxide nanoparticles have an influence on thermal properties of soft segment in polyurethane structure, while hydrophobic ones have the influence on hard polyurethane’s segment properties, increasing Tg values. Thermal stability of polyurethanes increased with increasing the amount of nanoparticles added. FT-IR analysis showed that there is no chemical reaction between polymer and nanoparticles.
URI: https://open.uns.ac.rs/handle/123456789/1193
ISSN: 13886150
DOI: 10.1007/s10973-018-7278-8
Nаlаzi sе u kоlеkciјаmа:FF Publikacije/Publications
TF Publikacije/Publications

Prikаzаti cеlоkupаn zаpis stаvki

SCOPUSTM   
Nаvоđеnjа

10
prоvеrеnо 10.05.2024.

Prеglеd/i stаnicа

42
Prоtеklа nеdеljа
12
Prоtеkli mеsеc
11
prоvеrеnо 10.05.2024.

Google ScholarTM

Prоvеritе

Аlt mеtrikа


Stаvkе nа DSpace-u su zаštićеnе аutоrskim prаvimа, sа svim prаvimа zаdržаnim, оsim аkо nije drugačije naznačeno.