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低浓度聚合物通过与链段迁移性相关,抑制和促进有机玻璃中的晶体生长。

Low-concentration polymers inhibit and accelerate crystal growth in organic glasses in correlation with segmental mobility.

机构信息

School of Pharmacy and Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53705, USA.

出版信息

J Phys Chem B. 2013 Sep 5;117(35):10334-41. doi: 10.1021/jp406418n. Epub 2013 Aug 26.

Abstract

Crystal growth in organic glasses has been studied in the presence of low-concentration polymers. Doping the organic glass nifedipine (NIF) with 1 wt % polymer has no measurable effect on the glass transition temperature Tg of host molecules, but substantially alters the rate of crystal growth, from a 10-fold reduction to a 30% increase at 12 °C below the host Tg. Among the polymers tested, all but polyethylene oxide (PEO) inhibit growth. The inhibitory effects greatly diminish in the liquid state (at Tg + 38 °C), but PEO persists to speed crystal growth. The crystal growth rate varies exponentially with polymer concentration, in analogy with the polymer effect on solvent mobility, though the effect on crystal growth can be much stronger. The ability to inhibit crystal growth is not well ordered by the strength of host-polymer hydrogen bonds, but correlates remarkably well with the neat polymer's Tg, suggesting that the mobility of polymer chains is an important factor in inhibiting crystal growth in organic glasses. The polymer dopants also affect crystal growth at the free surface of NIF glasses, but the effect is attenuated according to the power law us ∝ ub(0.35), where us and ub are the surface and bulk growth rates.

摘要

在低浓度聚合物存在的情况下研究了有机玻璃中的晶体生长。将有机玻璃硝苯地平(NIF)掺杂 1wt%的聚合物对主体分子的玻璃化转变温度 Tg 没有可测量的影响,但大大改变了晶体生长的速率,在低于主体 Tg 的 12°C 时,从 10 倍降低到 30%增加。在所测试的聚合物中,除了聚乙烯氧化物(PEO)之外,所有聚合物都抑制了生长。在液态(Tg+38°C)下,抑制作用大大减弱,但 PEO 仍能加速晶体生长。晶体生长速率与聚合物浓度呈指数关系,与聚合物对溶剂流动性的影响类似,尽管对晶体生长的影响可能更强。抑制晶体生长的能力与主体-聚合物氢键的强度没有很好的顺序关系,但与纯聚合物的 Tg 非常相关,这表明聚合物链的流动性是抑制有机玻璃中晶体生长的一个重要因素。聚合物掺杂剂也会影响 NIF 玻璃自由表面的晶体生长,但根据 us∝ub(0.35)的幂律,效应会减弱,其中 us 和 ub 是表面和体相生长速率。

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