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Pregled bibliografske jedinice broj: 617208

Antimicrobial functionalization of polylactide polymers through bulk and plasma modification


Marina, Turajlija
Antimicrobial functionalization of polylactide polymers through bulk and plasma modification, 2013., doktorska disertacija, Tekstilno tehnološki fakultet, Zagreb, Hrvatska


CROSBI ID: 617208 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Antimicrobial functionalization of polylactide polymers through bulk and plasma modification

Autori
Marina, Turajlija

Vrsta, podvrsta i kategorija rada
Ocjenski radovi, doktorska disertacija

Fakultet
Tekstilno tehnološki fakultet

Mjesto
Zagreb, Hrvatska

Datum
07.01

Godina
2013

Stranica
212

Mentor
Bischof, Sandra

Neposredni voditelj
Sabyasachi, Gann

Ključne riječi
polylactide polimer; biogradiabilty. antimaicrobial fdinishing; chitosan; plasma; nano-composite

Sažetak
The aim of this thesis was to develop innovative renewable products of biodegradable characteristics with broad application possibilities. Silver (Ag) is an efficacious and an useful antibacterial agent and thus was incorporated into the PLA polymer either in bulk or by surface modifications. Surface modification of PLA with silver was performed by two different plasma treatments using pure Ag layer and Ag nanoparticles embedded in a matrix. Antimicrobial activity of PLA films was measured against two Gram-positive bacteria Listeria monocytogenes (DMSZ15675) and Staphylococcus aureus ( ATCC 6538) and two Gram-negative bacteria Salmonella typhimurium (TA100) and Escherichia coli (DSMZ 30083). Further characterisation of polylactide films was performed by contact angle measurment in order to determine their hydrophilicity. Obtained results of modified PLA - revealed that presence of only small amounts of silver can show antibacterial properties when used in bulk or surface modifications. Further low molecular chitosan, which is a biopolymer was also used for antimicrobial finishing and it was used for bulk modifications of PLA polymer and showed improvement of the antimicrobial properties of materials. Glycerol (GA) and polyethylene glycol (PEG) improved hydrophilic characteristics of PLA surfaces and facilitates contact with bacteria and improve the antimicrobial efficacy of the PLA. Surface active agent polyethylene glycol tert-octylphenyl ether (T2) and tetraethylene glycol dodecyl ether (T1), improved hydrophilic characteristics of PLA surfaces and facilitates even better contact with bacteria and improve the antimicrobial efficacy of the PLA. The plasma conditions and parameters showed a strong influence on plasma-deposited thin films, which resulted with the improvement of hydrophilicity and antimicrobial properties. Silver release of different coatings on the films was investigated by using Inductively Coupled Plasma – Optical Emission Spectroscopy (ICP-OES). PLA bulk sample exhibited the biggest Ag release after 21 day in water. PLA bulk and surfaces modified sample exhibited the higher percentage of silver released from surfaces obtained from nano silver composites than from the surfaces obtained from silver sputtered process. Surface characterisation of PLA films was performed with XPS analysis (X-ray Photoelectron Microscopy). Obtained results showed that PLA bulk modified samples do not contains silver on the surface of the films, and that nanocomposites films contain less silver than films obatined with plasma sputtered process.

Izvorni jezik
Engleski

Znanstvena područja
Tekstilna tehnologija



POVEZANOST RADA


Projekti:
117-1171419-1407 - Alternativni ekološki povoljni procesi i metode kemijske modifikacije celuloze (Katović, Drago, MZOS ) ( CroRIS)

Ustanove:
Tekstilno-tehnološki fakultet, Zagreb


Citiraj ovu publikaciju:

Marina, Turajlija
Antimicrobial functionalization of polylactide polymers through bulk and plasma modification, 2013., doktorska disertacija, Tekstilno tehnološki fakultet, Zagreb, Hrvatska
Marina, T. (2013) 'Antimicrobial functionalization of polylactide polymers through bulk and plasma modification', doktorska disertacija, Tekstilno tehnološki fakultet, Zagreb, Hrvatska.
@phdthesis{phdthesis, author = {Marina, Turajlija}, year = {2013}, pages = {212}, keywords = {polylactide polimer, biogradiabilty. antimaicrobial fdinishing, chitosan, plasma, nano-composite}, title = {Antimicrobial functionalization of polylactide polymers through bulk and plasma modification}, keyword = {polylactide polimer, biogradiabilty. antimaicrobial fdinishing, chitosan, plasma, nano-composite}, publisherplace = {Zagreb, Hrvatska} }
@phdthesis{phdthesis, author = {Marina, Turajlija}, year = {2013}, pages = {212}, keywords = {polylactide polimer, biogradiabilty. antimaicrobial fdinishing, chitosan, plasma, nano-composite}, title = {Antimicrobial functionalization of polylactide polymers through bulk and plasma modification}, keyword = {polylactide polimer, biogradiabilty. antimaicrobial fdinishing, chitosan, plasma, nano-composite}, publisherplace = {Zagreb, Hrvatska} }




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