Nasseri Rasool, Moresoli Christine, Yu Aiping, Yuan Zhongshun, Xu Chunbao Charles
Department of Chemical Engineering, University of Waterloo, 200 University Avenue West, Waterloo N2L 3G1, Ontario, Canada.
Waterloo Institute for Nanotechnology, University of Waterloo, 200 University Avenue West, Waterloo N2L 3G1, Ontario, Canada.
ACS Omega. 2022 Aug 2;7(32):27851-27863. doi: 10.1021/acsomega.2c00360. eCollection 2022 Aug 16.
The effect of interphase properties on the crystallization behavior of blends of poly(lactic acid) (PLA)/acetylated starch (AS) with different degrees of substitution (DSs) was investigated. Under isothermal crystallization conditions, the rate of crystallization was higher for PLA/DS0.5 and lower for PLA/DS1.5 and PLA/DS2.5 when compared to PLA. In contrast, non-isothermal crystallization behavior indicated a slower rate of crystallization of PLA/DS0.5 and a faster rate of crystallization of PLA/DS1.5 and PLA/DS2.5 compared to PLA at the highest cooling rate (5 °C/min). The potential relationship between crystallization behavior and interphase properties and interphase thickness and formation of rigid amorphous fraction in the interphase, was investigated. The formation of a rigid amorphous fraction in PLA/DS1.5 and a thick interphase in PLA/DS2.5 prevented the formation of crystals on the dispersed phase and interrupted the crystallization under isothermal conditions. Hydrogen bonding in the PLA/DS1.5 blend and hydrophobic interactions in the PLA/DS2.5 blend may facilitate the crystallization at high cooling rates under non-isothermal conditions. Small-angle X-ray scattering analysis revealed the presence of a smaller lamellar structure in PLA/AS blends. The largest amorphous phase among blends was observed for the PLA/DS1.5 blend, which can be attributed to the hydrogen bonding in the interphase region of this blend.
研究了不同取代度(DSs)的聚乳酸(PLA)/乙酰化淀粉(AS)共混物的中间相性质对其结晶行为的影响。在等温结晶条件下,与PLA相比,PLA/DS0.5的结晶速率较高,而PLA/DS1.5和PLA/DS2.5的结晶速率较低。相反,非等温结晶行为表明,在最高冷却速率(5℃/min)下,与PLA相比,PLA/DS0.5的结晶速率较慢,而PLA/DS1.5和PLA/DS2.5的结晶速率较快。研究了结晶行为与中间相性质、中间相厚度以及中间相中刚性非晶部分形成之间的潜在关系。PLA/DS1.5中刚性非晶部分的形成以及PLA/DS2.5中较厚的中间相阻止了分散相上晶体的形成,并在等温条件下中断了结晶过程。PLA/DS1.5共混物中的氢键和PLA/DS2.5共混物中的疏水相互作用可能有助于在非等温条件下高冷却速率下的结晶。小角X射线散射分析表明,PLA/AS共混物中存在较小的片层结构。PLA/DS1.5共混物在共混物中具有最大的非晶相,这可归因于该共混物中间相区域中的氢键。