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Title:FUNKCIONALIZACIJA POVRŠINE PET (POLIETILEN TEREFTALATNE) FOLIJE ZA DOSEGO PROTIMIKROBNIH LASTNOSTI
Authors:ID Kaisersberger, Maja (Author)
ID Leitgeb, Maja (Mentor) More about this mentor... New window
ID Tkavc, Tina (Comentor)
ID Fras Zemljič, Lidija (Comentor)
Files:.pdf UNI_Kaisersberger_Maja_2010.pdf (4,18 MB)
MD5: 5003904B9B35623E961B3ED458C138F2
PID: 20.500.12556/dkum/5eaab1d0-7de1-421b-a4fe-2c4440498da5
 
Language:Slovenian
Work type:Undergraduate thesis
Typology:2.11 - Undergraduate Thesis
Organization:FKKT - Faculty of Chemistry and Chemical Engineering
Abstract:Trend pri razvoju inovativnih embalažnih materialov je v funkcionalizaciji površine embalažnih materialov z namenom pridobitve protimikrobnih lastnosti. Zato iz dneva v dan narašča zanimanje za funkcionalizacijske postopke, pri katerih se uporabljajo okolju prijazni in biorazgradljivi reagenti. Eden izmed najperspektivnejših je hitozan, ki je pridobljen s postopkom alkalne deacetilacije hitina in je za celulozo drugi najbolj razširjeni bipolimer na zemlji. Hitozan vsebuje amino skupine, ki elektrostatično reagirajo s površino celic patogenih mikroorganizmov in jih s tem poškodujejo ali celo uničijo. Dejstvo je, da je večina obstoječih raziskav s hitozanom izvedena v raztopini in ne v obliki filma, tako da razvoj hitozanskih premazov za materiale embaliranja predstavlja velik izziv. Diplomsko delo podaja bistvene podatke o PET embalaži ter vsebuje primerjave med neobdelanim PET in PET z nanešenim hitozanskim premazom. Namen naše naloge je bil funkcionalizirati površino PET folij s hitozanom za dosego protimikrobnih lastnosti. Pri funkcionalizaciji polimerov za dosego specifičnih lastnosti je pomembno, da te dodane lastnosti na polimeru uspešno zasleduješ, zato smo obdelane površine PET materialov analizirali z vidika: i) vsebnosti vezave hitozana: določitev amino funkcionalnih skupin ter ii) načina vezave hitozana: reverzibilnost oz. ireverzibilnost vezave. S potenciometrično titracijo smo dokazovali prisotnost hitozana na površini PET po impregnaciji in desorpciji. Rezultate smo primerjali s suhima spektroskopskima tehnikama ATR FTIR in XPS. Obe tehniki dokazujeta vezavo hitozana na površino PET materiala. Drugi del diplomske naloge je bil namenjen študiju desorpcije hitozana s površine PET folij. Poleg že uporabljenih tehnik (potenciometrična titracija, ATR FTIR, XPS) je bila za določitev kinetike desorpcije hitozana s površine folij uporabljena indirektna polielektrolitska titracija. Primerjali smo jo s konvencionalno spektrofotometrično metodo — ninhidrinsko reakcijo. Na ta način smo želeli opredeliti naravo vezave hitozana na površino PET. Eden izmed najpomembnejših aspektov diplomskega dela je bil študij interakcij med funkcionalizirano površino materiala ter spektrom patogenih bakterij in gliv svežega perutninskega mesa, kjer v raziskavah obstaja vrzel — večina objav se nanaša na tekoče medije in ne na kompleksne heterogene sisteme, kot so funkcionalizirani vlaknotvorni polimerni materiali.
Keywords:PET, hitozan, potenciometrične in polielektrolitske titracije, ATR FTIR, XPS, protimikrobnost
Place of publishing:Maribor
Publisher:[M. Kaiserberger]
Year of publishing:2010
PID:20.500.12556/DKUM-16069 New window
UDC:577.15:66.098(043.2)
COBISS.SI-ID:2294863 New window
NUK URN:URN:SI:UM:DK:BW5PV0S0
Publication date in DKUM:01.10.2010
Views:4231
Downloads:256
Metadata:XML DC-XML DC-RDF
Categories:KTFMB - FKKT
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Secondary language

Language:English
Title:FUNCTIONALIZATION OF PET (POLYETHYLENE THEREPHTHALATE) SURFACES TO OBTAIN ANTIMICROBIAL PROPERTIES
Abstract:The trend in the development of innovative packaging materials is in packaging materials surface functionalization to obtain antimicrobial properties. Therefore, every day is growing interest in the functionalization procedures, which are environmentally friendly and use biodegradable reagents. One of the most perspective is chitosan, which is obtained by alkaline process deacetilation of chitin and is the second most widely bipolimer on Earth after cellulose. Chitosan contains amino groups that react with the electrostatic cell surface of pathogenic microorganisms and thus damage or even destroy them. The fact is that most existing researches with chitosan are made in the solution and not in the form of a film, so that the development of chitosan coatings for materials wrapping presents major challenge. Diploma thesis presents the essential details of PET packaging and includes a comparison between raw PET and PET with chitosan deposited coating. The aim of our study was to activate surface of PET film with chitosan to achieve antimicrobial properties. For functionalization of polymers to achieve specific properties, it is important that these properties of the polymer are successfully stalked, so we analyzed the treated PET surface materials in terms of: i) the amount of chitosan: the determination of amine functional groups, and ii) how chitosan is bound: reversibility or irreversibility of the binding. By potentiometric titration we show the presence of chitosan on the surface of PET foils after preservation and desorption. Results were compared with the dry ATR FTIR spectroscopic technique and XPS. Both techniques show the binding of chitosan on the surface of the PET material. The second part of the thesis was intended to study desorption of chitosan from the surface of PET film. In addition to previously used techniques (potentiometric titration, ATR FTIR, XPS) indirect polyelectrolyte titration was used to determine the kinetics of desorption from the surface of chitosan films. We compared it with conventional spectrophotometric method – ninhydrin reaction. In this way we wanted to define the nature of the binding of chitosan on the PET surface. One of the most important aspects of this thesis was the study of the interactions between the surface of the functionalized material and spectrum of pathogenic bacteria and fungi on fresh poultry meat, where there is a gap in research – most of the studies relate to the liquid media rather than complex heterogeneous systems such as fibre functionalized polymer materials.
Keywords:PET, chitosan, potentiometric and polyelectrolyte titrations, ATR FTIR, XPS, antimicrobial properties


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