结晶度对聚l -丙交酯热激发电流和复介电常数的影响

S. Hikosaka, H. Ishikawa, Y. Ohki
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引用次数: 10

摘要

近年来,以淀粉为原料合成的聚l -丙交酯作为一种可生物降解的聚合物备受关注。本文通过制备四种不同结晶度的PLLA样品,研究了结晶度对PLLA介电性能的影响。在温度为65 ~ 70℃时,所有样品都出现了热激极化电流(TSPC)峰,这是由于玻璃化转变造成的。发现TSPC峰的大小与结晶度相反。这可能是因为引起TSPC的节段模式弛豫随着结晶度的增加而受到更多的限制。所有样品均在65℃左右和90 ~ 100℃左右出现两个热激去极化电流(TSDC)峰值。较低的温度峰似乎是由于段模弛豫,而另一个是由于正模弛豫。此外,根据测量温度的不同,所有样品的复介电常数的实部急剧增加,并且在10-1到104 Hz的频率范围内,其虚部有一个峰值。这两部分的结晶度依赖关系与TSPC和TSDC峰在65 ~ 70℃时的结晶度依赖关系相似。因此,实部的增加和虚部的峰值可归因于段模弛豫。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Crystallinity on Thermally Stimulated Current and Complex Permittivity of Poly(L-lactide)
Recently poly(L-lactide) synthesized from starch is attracting much attention as a biodegradable polymer. In this paper, effects of crystallinity on dielectric properties of PLLA were studied by preparing four kinds of PLLA samples with different crystallinities. A thermally stimulated polarization current (TSPC) peak was found to appear in all the samples at temperatures around 65 to 70degC, which is due to the glass transition. The magnitude of the TSPC peak was found to be in the reverse order of crystallinity. This is presumably because the segmental-mode relaxation, which brings about the TSPC, is restricted more as the crystallinity increases. All the samples show two thermally stimulated depolarization current (TSDC) peaks at around 65degC and around 90 to 100degC. The lower-temperature peak seems to be due to the segmental-mode relaxation, while the other due to the normal-mode relaxation. Moreover, all the samples show a drastic increase in the real part of complex permittivity and have a peak in its imaginary part at frequencies from 10-1 to 104 Hz, depending on the measurement temperature. The crystallinity dependencies of the two parts are similar to those of the TSPC and TSDC peaks around 65 to 70degC. Therefore, the increase in the real part and the peak in the imaginary part are ascribable to the segmental-mode relaxation.
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