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首页> 外文期刊>Journal of Macromolecular Science. Physics >Synthesis of Co(II) Complex with Hexamethylenetetramine Using Jet Milling and Its Influence on the Thermal Performance of Poly(l-lactic acid)
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Synthesis of Co(II) Complex with Hexamethylenetetramine Using Jet Milling and Its Influence on the Thermal Performance of Poly(l-lactic acid)

机译:喷射研磨法合成六亚甲基四胺与钴(II)配合物及其对聚乳酸的热性能的影响

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摘要

Cobalt(II)-hexamethylenetetramine (Co(II)-HMTA) complex was prepared using jet milling. Elemental analysis and thermogravimetric analysis confirmed that the structure of the Co(II)-HMTA complex was Co(HMTA)(2)Cl(2)6H(2)O (LG). The influence of LG on the thermal performance of poly(l-lactic acid) (PLLA) was investigated. Isothermal crystallization behavior and X-ray diffraction analysis (XRD) results of PLLA/LG showed that LG could improve the crystallization performance of PLLA; 1% LG caused the half time of overall crystallization (t(1/2)) of PLLA to decrease from 96.5min to a minimum value 3.8min at 100 degrees C. However, the isothermal crystallization kinetics of PLLA/LG described using the Avrami equation and XRD analysis indicated that the isothermal crystallization temperature and the LG concentration significantly affected the isothermal crystallization process of PLLA. In particular, 0.3% LG caused the intensity of the X-ray crystal diffraction peaks of PLLA to decrease with an increase of isothermal crystallization time after increasing for the first 5min. The thermal decomposition analysis of PLLA/LG showed that the onset decomposition temperature of PLLA with a small amount of LG was higher than that of the neat PLLA and PLLA with a high concentration LG.
机译:使用喷射研磨制备钴(II)-六亚甲基四胺(Co(II)-HMTA)配合物。元素分析和热重分析证实,Co(II)-HMTA配合物的结构为Co(HMTA)(2)Cl(2)6H(2)O(LG)。研究了LG对聚(1-乳酸)(PLLA)热性能的影响。 PLLA / LG的等温结晶行为和X射线衍射分析(XRD)结果表明,LG可以提高PLLA的结晶性能。 1%的LG导致PLLA的总结晶半衰期(t(1/2))在100摄氏度下从96.5min降至最小值3.8min。但是,使用Avrami描述了PLLA / LG的等温结晶动力学方程和XRD分析表明,等温结晶温度和LG浓度显着影响PLLA的等温结晶过程。特别地,0.3%LG使PLLA的X射线晶体衍射峰的强度在增加前5分钟后随等温结晶时间的增加而降低。 PLLA / LG的热分解分析表明,少量LG的PLLA的起始分解温度高于纯PLLA和高浓度LG的PLLA的分解温度。

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