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Isothermal and non-isothermal crystallization behavior of poly(L-lactic acid): Effects of stereocomplex as nucleating agent

机译:聚(L-乳酸)的等温和非等温结晶行为:立体配合物作为成核剂的作用

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The effects of incorporated poly(D-lactic acid) (PDLA) as poly(lactic acid) (PLA) stereocomplex crystallites on the isothermal and non-isothermal crystallization behavior of poly(L-lactic acid) (PLLA) from the melt were investigated for a wide PDLA contents from 0.1 to 10 wt%. In isothermal crystallization from the melt, the radius growth rate of PLLA spherulites (crystallization temperature (T-c) >= 125 degrees C), the induction period for PLLA spherulite formation (t(i)) (T-c >= 125 degrees C), the growth mechanism of PLLA crystallites (90 degrees C <= T-c <= 150 degrees C), and the mechanical properties of the PLLA films were not affected by the incorporation of PDLA or the presence of stereocomplex crystallites as a nucleating agent. In contrast, the presence of stereocomplex crystallites significantly increased the number of PLLA spherulites per unit area or volume. In isothermal crystallization from the melt, at PDLA content of 10 wt%, the starting, half, and ending times for overall PLLA crystallization (t(c)(S), t(c)(1/2), and t(c)(E), respectively) were much shorter than those at PDLA content of 0 wt%, due to the increased number of PLLA spherulites. Reversely, at PDLA content of 0.1 wt%, the t(c)(S), t(c)(112), and t(c)(E) were longer than or similar to those at PDLA content of 0 wt%, probably due to the long ti and the decreased number of spherulites. This seems to have been caused by free PDLA chains, which did not form stereocomplex crystallites. On the other hand, at PDLA contents of 0.3-3 wt%, the t(c)(S), t(c)(1/2), and t(c)(E) were shorter than or similar to those at PDLA content of 0 wt% for the T-c range below 95 degrees C and above 125 degrees C, whereas this inclination was reversed for the T-c range of 100-120 degrees C. In the non-isothermal crystallization of as-cast or amorphous-made PLLA films during cooling from the melt, the addition of PDLA above I wt% was effective to accelerate overall PLLA crystallization. The X-ray diffractometry could trace the formation of stereocomplex crystallites in the melt-quenched PLLA films at PDLA contents above I wt%. This study revealed that the addition of small amounts of PDLA is effective to accelerate overall PLLA crystallization when the PDLA content and crystallization conditions are scrupulously selected. (c) 2006 Elsevier Ltd. All rights reserved.
机译:研究了掺入聚(D-乳酸)(PDLA)作为聚(乳酸)(PLA)立体复合微晶对熔体中聚(L-乳酸)(PLLA)的等温和非等温结晶行为的影响PDLA含量从0.1到10 wt%不等。在从熔体中进行等温结晶时,PLLA球晶的半径生长速率(结晶温度(Tc)> = 125℃),PLLA球晶形成的诱导期(t(i))(Tc> = 125℃), PLLA晶体(90°C <= Tc <= 150℃)的生长机理,以及PLLA膜的机械性能不受PDLA掺入或立体复合微晶作为成核剂的影响。相反,立体复合微晶的存在显着增加了单位面积或单位体积的PLLA球晶的数量。从熔体中进行等温结晶时,PDLA含量为10 wt%时,整个PLLA结晶的开始,一半和结束时间(t(c)(S),t(c)(1/2)和t(c )(E)分别比PDLA含量为0 wt%时要短得多,这是因为PLLA球晶的数量增加了。相反,在PDLA含量为0.1 wt%的情况下,t(c)(S),t(c)(112)和t(c)(E)大于或相似于PDLA含量为0 wt%的情况。可能是由于ti长而球晶数量减少所致。这似乎是由未形成立体复合微晶的游离PDLA链引起的。另一方面,在PDLA含量为0.3-3 wt%时,t(c)(S),t(c)(1/2)和t(c)(E)小于或相似于对于低于95摄氏度和高于125摄氏度的Tc范围,PDLA含量为0 wt%,而对于100-120摄氏度的Tc范围,这种倾斜度是相反的。在铸态或非晶态非等温结晶中在从熔体冷却的过程中,PLLA膜的添加量超过1 wt%,可以有效地促进PLLA的整体结晶。 X射线衍射法可以追踪当PDLA含量高于1wt%时,在熔融淬火的PLLA膜中立体复合微晶的形成。这项研究表明,当谨慎选择PDLA含量和结晶条件时,添加少量PDLA可以有效加速PLLA的整体结晶。 (c)2006 Elsevier Ltd.保留所有权利。

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