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Simultaneous small-angle neutron scattering and Fourier transform infrared spectroscopic measurements on cocrystals of syndiotactic polystyrene with polyethylene glycol dimethyl ethers

机译:间规聚苯乙烯与聚乙二醇二甲醚共晶体的同时小角中子散射和傅里叶变换红外光谱测量

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摘要

Syndiotactic polystyrene (sPS) is a crystalline polymer which has a unique property; it is able to form cocrystals with a wide range of chemical compounds, in which the guest molecules are confined in the vacancies of the host sPS crystalline region. Recently, it has been found that even polyethylene glycol oligomers with a molecular weight of more than several hundreds can be introduced into the sPS crystalline region. It is quite important to know how such a long-chain molecule is stored in the host sPS lattice. To tackle this issue, a new simultaneous measurement method combing small-angle neutron scattering and Fourier transform infrared spectroscopy (SANS/FTIR), which has been recently developed by the authors, was applied to an sPS cocrystal with polyethylene glycol dimethyl ether with a molecular weight of 500 (PEGDME500). The temperature-dependent changes of the SANS profile and FTIR spectrum were followed from room temperature up to 413 K for a one-dimensionally oriented SANS/PEGDME500 cocrystal sample. The intensity of the reflections due to the stacking of crystalline lamellae showed a significant temperature dependence. The two-dimensional pattern in the high Q region of SANS also changed depending on temperature. The combined information obtained by SANS and FTIR suggested that PEGDME500 molecules are distributed in both the crystalline and amorphous regions in the low-temperature region close to room temperature, but they are predominantly included in the amorphous region in the high-temperature region. It was also suggested by the two-dimensional SANS profile that PEGDME500 molecules in the crystalline region have an elongated structure along the thickness direction of the crystalline lamellae.
机译:间规聚苯乙烯(sPS)是一种结晶聚合物,具有独特的性能。它能够与多种化合物形成共晶体,其中客体分子被限制在宿主sPS晶体区域的空位中。近来,已经发现甚至分子量大于几百的聚乙二醇低聚物也可以引入sPS结晶区域。了解这样的长链分子如何存储在宿主sPS晶格中非常重要。为了解决这个问题,作者最近开发了一种结合小角度中子散射和傅立叶变换红外光谱(SANS / FTIR)的新的同时测量方法,该方法同时用于具有聚乙二醇二甲醚分子的sPS共结晶。重量500(PEGDME500)。对于一维定向的SANS / PEGDME500共晶样品,从室温到413 K,随温度变化的SANS轮廓和FTIR光谱随温度变化而变化。由于晶体薄片的堆叠而引起的反射强度显示出显着的温度依赖性。 SANS高Q区域中的二维图案也随温度而变化。由SANS和FTIR获得的综合信息表明,PEGDME500分子分布在接近室温的低温区域的结晶和非晶区域中,但主要包含在高温区域的非晶区域中。二维SANS轮廓还表明,晶体区域中的PEGDME500分子沿晶体薄片的厚度方向具有伸长的结构。

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