Title of article :
Characteristics of starch-based films plasticised by glycerol and by the ionic liquid 1-ethyl-3-methylimidazolium acetate: A comparative study
Author/Authors :
Xie، نويسنده , , Fengwei and Flanagan، نويسنده , , Bernadine M. and Li، نويسنده , , Ming and Sangwan، نويسنده , , Parveen and Truss، نويسنده , , Rowan W. and Halley، نويسنده , , Peter J. and Strounina، نويسنده , , Ekaterina V. and Whittaker، نويسنده , , Andrew K. and Gidley، نويسنده , , Michael J. and Dean، نويسنده , , Katherine M. and Shamshina، نويسنده , , Julia L. and Rogers، نويسنده , , Robin، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Abstract :
This paper reports the plasticisation effect of the ionic liquid, 1-ethyl-3-methylimidazolium acetate ([Emim][OAc]), as compared with the traditionally used plasticiser, glycerol, on the characteristics of starch-based films. For minimising the additional effect of processing, a simple compression moulding process (which involves minimal shear) was used for preparation of starch-based films. The results show that [Emim][OAc] was favourable for plasticisation, i.e., disruption of starch granules (by scanning electron microscopy), and could result in a more amorphous structure in the starch-based materials (by X-ray diffraction and dynamic mechanical analysis). 13C CP/MAS and SPE/MAS NMR spectroscopy revealed that not only was the crystallinity reduced by [Emim][OAc], but also the amorphous starch present was plasticised to a more mobile form as indicated by the appearance of amorphous starch in the SPE/MAS spectrum. Mechanical results illustrate that, when either glycerol or [Emim][OAc] was used, a higher plasticiser content could contribute to higher flexibility. In spite of the accelerated thermal degradation of starch by [Emim][OAc] as shown by thermogravimetric analysis, the biodegradation study revealed the antimicrobial effect of [Emim][OAc] on the starch-based materials. Considering the high-amylose starch used here which is typically difficult to gelatinise in a traditional plasticiser (water and/or glycerol), [Emim][OAc] is demonstrated to be a promising plasticiser for starch to develop “green” flexible antimicrobial materials for novel applications.
Keywords :
Ionic liquid , 1-Ethyl-3-methylimidazolium acetate , plasticization , Crystalline structure , Biodegradability , Starch
Journal title :
CARBOHYDRATE POLYMERS
Journal title :
CARBOHYDRATE POLYMERS