Bionanocomposites based on Plla, Pcl and montmorillonite: synthesis, characterization and crystallization


Autoria(s): Bettini, Giacomo
Contribuinte(s)

Caretti, Daniele

Muller, Alejandro J.

Data(s)

21/03/2016

31/12/1969

Resumo

Poly(lactide) is one of the best candidate to replace conventional petroleum-based polymers, since it is biobased, biocompatible and biodegradable. However, commercial PLA materials typically have low crystallization rate resulting in long processing time and low production efficiency. In this work the effects of two nanofillers MMT30B and MMT30B-g-P(LA-co-CL) on the crystallization rate of neat PLA and PLA/PCL blend were investigated. MMT30B-g-P(LA-co-CL) was synthetized by in situ grafting reaction. The synthesis was carried in xylene at 140°C, upon the results of a screening. The grafted copolymers were evaluated by 1H-NMR ,ATR–IR and TGA. Solvent casted films were obtained by mixing MMT30B-g-P(LA-co-CL) at 5% (w/w) with neat PLA and PLA/PCL blend, comparing the properties with the corresponding blends with and without a 5% of (w/w) unmodified clay. SEM images on PLA based blends shows that MMT30B is aggregated into larger particles compared to MMT30B-g-P(LLA-co-CL). This behavior is correlated to the better exfoliation of MMT30B-g-P(LA-co-CL) clay layers. SEM images on PLA/PCL based blends exhibit the typical sea-island morphology, characteristic of immiscible blends. PLA is the matrix while PCL is finely dispersed in droplets. MMT30B does not reduce PCL droplets size, while MMT30B-g-P(LA-co-CL) reduces the size of PCL droplets. This means that MMT30B-g-P(LA-co-CL) can migrate to the PLA-PCL interface, acting as a compatibilizer. Non-isothermal DSC cooling scans show a fractionated crystallization of the PCL phase in PLA/PCL/MMT30B-g-P(LA-co-CL), confirming the compatibilizer effect of MMT30B-g-P(LA-co-CL). At the same timeMMT30B-g-P(LA-co-CL) can better nucleate the PLA phase, both in neat PLA and PLA/PCL blend, promoting the crystallization during the heating scans. In isothermal condition, both the nanofillers increase the crystallization rate of PLA phase in neat PLA, while in PLA/PCL blends the effect is covered by the nucleating effect of PCL.

Formato

application/pdf

Identificador

http://amslaurea.unibo.it/10025/1/bettini_giacomo_tesi.pdf

Bettini, Giacomo (2016) Bionanocomposites based on Plla, Pcl and montmorillonite: synthesis, characterization and crystallization. [Laurea magistrale], Università di Bologna, Corso di Studio in Chimica industriale [LM-DM270] <http://amslaurea.unibo.it/view/cds/CDS0884/>

Relação

http://amslaurea.unibo.it/10025/

Direitos

Free to read

Palavras-Chave #grafted random copolymers montmorillonite overall crystallization rate isothermal crystallization rate poly(L-lactide) #Chimica industriale [LM-DM270] #cds :: 0884 :: Chimica industriale [LM-DM270] #sessione :: terza
Tipo

PeerReviewed

info:eu-repo/semantics/masterThesis

Idioma(s)

en

Publicador

Alma Mater Studiorum - Università di Bologna