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首页> 外文期刊>ACS Omega >Starch/Alkane Diol Materials: Unexpected Ultraporous Surfaces, Near-Isoporous Cores, and Films Moving on Water
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Starch/Alkane Diol Materials: Unexpected Ultraporous Surfaces, Near-Isoporous Cores, and Films Moving on Water

机译:淀粉/烷烃二醇材料:出乎意料的超吸收表面,近代核心,以及在水面上移动的薄膜

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The aim of this study was to find alternative starch plasticizers to glycerol that yielded a less tacky material in high-moisture conditions without leading to starch crystallization. A range of glycerol films containing different potential plasticizers (linear alkane diols) were therefore produced, and it was shown that 1,3-propanediol, in combination with glycerol, was a possible solution to the problem. Several additional interesting features of the starch films were however also revealed. The larger diols, instead of showing plasticizing features, yielded a variety of unexpected structures and film properties. Films with 1,6-hexanediol and 1,7-heptanediol showed an ultraporous film surface and near-isoporous core. The most striking feature was that starch films with these two diols moved/rotated over the surface when placed on water, with no other stimulus than the interaction with water. Films with 1,8-octanediol and 1,10-decanediol did not show these features, but there was clear evidence of a structure with phase-separated crystallized diol in a starch matrix, as observed in high-resolution scanning electron microscopy (SEM) images.
机译:本研究的目的是为甘油找到替代淀粉增塑剂,在没有导致淀粉结晶的情况下在高湿度条件下产生较少的粘性材料。因此制备了一系列含有不同潜在增塑剂(线性烷烃二醇)的甘油薄膜,并显示1,3-丙二醇与甘油的组合是可能的解决方案。然而,也揭示了淀粉膜的几个额外有趣的特征。较大的二醇,而不是显示塑化特征,产生各种意外的结构和膜性能。具有1,6-己二醇和1,7-庚二醇的薄膜显示出超孔膜表面和近等孔芯。最引人注目的特征是当放置在水面上时,淀粉膜在表面上移动/旋转,而没有与水相互作用的刺激。具有1,8-辛醇和1,10-癸二醇的薄膜未显示这些特征,但是在高分辨率扫描电子显微镜(SEM)中观察到的淀粉基质中具有相位分离的结晶二醇的结构清晰的结构。图片。

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