Department of Biomolecular Engineering, Tokyo Institute of Technology, Midori-ku, Yokohama, Japan.
ACS Appl Mater Interfaces. 2009 Feb;1(2):402-11. doi: 10.1021/am800106f.
Layered metal phosphonate, zinc phenylphosphonate (PPZn), reinforced poly(L-lactide) (PLLA) composites were fabricated by a melt-mixing technique. The nonisothermal and isothermal crystallization, melting behavior, spherulite morphology, crystalline structure, and static and dynamic mechanical properties of the PLLA/PPZn composites were investigated. PPZn shows excellent nucleating effects on PLLA crystallization. With incorporation of 0.02% PPZn, PLLA can finish crystallization under cooling at 10 degrees C/min. The crystallization rate of PLLA further increases with increasing PPZn concentration. Upon the addition of 15% PPZn, the crystallization half-times of a PLLA/PPZn composite decrease from 28.0 to 0.33 min at 130 degrees C, and from 60.2 to 1.4 min at 140 degrees C, compared to the neat PLLA. With the presence of PPZn, the nuclei number of PLLA increases and the spherulite size reduces significantly. Through analysis of the crystal structures of PLLA and PPZn, it was proposed that the nucleation mechanism of the PLLA/PPZn system is epitaxial nucleation. The incorporation of PPZn has no discernible effect on the crystalline structure of PLLA. Moreover, PPZn has good reinforcement effects on the PLLA matrix. The tensile strength of the composite is enhanced with the addition of a relatively small amount of PPZn (<5%). The tensile and storage moduli of composites increase with increasing PPZn loadings, and they respectively improve by 28% and 34% with the incorporation of a 15% PPZn filler, as compared to the neat PLLA.
层状金属膦酸盐、苯基亚磷酸锌(PPZn)增强聚(L-丙交酯)(PLLA)复合材料通过熔融混合技术制备。研究了 PLLA/PPZn 复合材料的非等温和等温结晶、熔融行为、球晶形态、晶体结构以及静态和动态力学性能。PPZn 对 PLLA 结晶具有优异的成核作用。在 0.02%PPZn 的加入下,PLLA 可以在 10°C/min 的冷却速率下完成结晶。随着 PPZn 浓度的增加,PLLA 的结晶速率进一步提高。当添加 15%PPZn 时,与纯 PLLA 相比,在 130°C 时 PLLA/PPZn 复合材料的结晶半时间从 28.0 降至 0.33min,在 140°C 时从 60.2 降至 1.4min。在 PPZn 的存在下,PLLA 的晶核数量增加,球晶尺寸显著减小。通过分析 PLLA 和 PPZn 的晶体结构,提出了 PLLA/PPZn 体系的成核机制是外延成核。PPZn 的加入对 PLLA 的晶体结构没有明显影响。此外,PPZn 对 PLLA 基体具有良好的增强效果。随着添加量相对较小的 PPZn(<5%),复合材料的拉伸强度得到提高。随着 PPZn 负载量的增加,复合材料的拉伸和储能模量均增加,与纯 PLLA 相比,分别提高了 28%和 34%,当添加 15%PPZn 填料时。