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首页> 外文期刊>Polimery >Thermal performances and optical property of poly(L-lactic acid) under the influence of N,N'-dodecanedioic bis(3-phenylpropionic acid) dihydrazide as a crystallization promoter
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Thermal performances and optical property of poly(L-lactic acid) under the influence of N,N'-dodecanedioic bis(3-phenylpropionic acid) dihydrazide as a crystallization promoter

机译:n,n'-十二烷基丙二酸酯双(3-苯基丙酸)二酰肼作为结晶促进剂的影响下聚(L-乳酸)的热性能和光学性能

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摘要

Poly(L-lactic acid) (PLLA) as an important biodegradable polymer suffers from slow crystallization rate and poor heat resistance. An organic compound N,N'-dodecanedioic bis(3-phenylpropionic acid) dihydrazide (BHADD) was synthesized to evaluate its general influences on the physical properties of PLLA. The melt-crystallization process indicated that BHADD could serve as a heterogeneous nucleating agent for improving the crystallization of PLLA, and PLLA/1%BHADD exhibited the sharpest melt-crystallization peak located at the highest temperature, as well as an increase of cooling rate weakened the crystallization ability of BHADD-nucleated PLLA. And the final melting temperature also displayed the significant effect on the crystallization process of PLLA. For the cold-crystallization process, both BHADD concentration and heating rate affected the cold-crystallization behavior of PLLA/BHADD, the increasing of BHADD concentration caused the cold-crystallization peak to shift to the lower temperature; in contrast, a higher heating rate during heating leaded to the peak's shift toward the higher temperature because of the thermal inertia. The melting behavior of PLLA/BHADD depended on the crystallization temperatures and heating rates, and the double melting peaks were attributed to the melting-recrystallization. Thermal decomposition experiment showed all PLLA/BHADD samples as the pure PLLA only exhibited one thermal decomposition stage, but PLLA/BHADD had a lower thermal stability than the pure PLLA. Additionally, the addition of BHADD seriously decreased the light transmittance of PLLA.
机译:聚L-乳酸(PLLA)是一种重要的可生物降解聚合物,结晶速度慢,耐热性差。合成了一种有机化合物N,N'-十二碳二酰二肼(BHADD),以评估其对PLLA物理性质的一般影响。熔融结晶过程表明,BHADD可以作为非均相成核剂来改善PLLA的结晶,PLLA/1%BHADD在最高温度处表现出最尖锐的熔融结晶峰,并且冷却速率的增加削弱了BHADD成核PLLA的结晶能力。最终熔融温度对PLLA的结晶过程也有显著影响。对于冷结晶过程,BHADD浓度和升温速率都影响PLLA/BHADD的冷结晶行为,BHADD浓度的增加导致冷结晶峰向低温移动;相比之下,由于热惯性,加热过程中较高的加热速率导致峰值向较高温度移动。PLLA/BHADD的熔融行为取决于结晶温度和加热速率,双熔融峰归因于熔融再结晶。热分解实验表明,所有PLLA/BHADD样品作为纯PLLA仅表现出一个热分解阶段,但PLLA/BHADD的热稳定性低于纯PLLA。此外,BHADD的加入严重降低了PLLA的透光率。

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