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首页> 外文期刊>Journal of Molecular Structure >Structure, thermal properties and molecular mobility in cholesteryl hydrogen phthalate: Different approaches to the crystal, the glassy crystal and the mesophase
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Structure, thermal properties and molecular mobility in cholesteryl hydrogen phthalate: Different approaches to the crystal, the glassy crystal and the mesophase

机译:在邻苯二甲酸胆固醇氢氢酸盐中的结构,热性质和分子迁移率:晶体,玻璃状晶体和中间相的不同方法

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摘要

Cholesteryl hydrogen phthalate (CHP) is a good glass-former: cooling the isotropic liquid forms the cholesteric mesophase, and subsequent cooling leads to the formation of an orientationally ordered glass. The thermal behavior of CHP was studied by DSC and it was found that, once melted, the commercial crystalline form cannot recover through heat treatments: cold crystallization gives rise to different polymorphic forms; in contrast, recrystallization of the commercial crystal from an ethanol solution leads to the same crystalline form. The structure of the stable ordered polymorph (commercial) was resolved by single-crystal X-ray diffraction (SXRD) at room and low temperature (167 +/- 2 K); it belongs to the monoclinic space group P2 1 . The glass transformation of CHP was studied by DSC and thermally stimulated depolarization currents (TSDC). The values obtained for the glass transition temperature and the dynamic fragility indicate that CHP is a moderately fragile glass former. Concerning secondary relaxations, the results suggest that the mobility detected by TSDC has a JohariGoldstein nature. On the other hand, the interpretation of the results above Tg raises difficulties eventually due to the non-isothermal nature of the TSDC technique together with the temperature dependent structure of the cholesteric mesophase. (c) 2020 Elsevier B.V. All rights reserved.
机译:邻苯二甲酸氢胆甾酯(CHP)是一种很好的玻璃成型剂:冷却各向同性液体形成胆甾相中间相,随后冷却导致形成定向有序玻璃。通过DSC研究了CHP的热行为,发现一旦熔融,商业结晶形式无法通过热处理恢复:冷结晶产生不同的多晶形式;相比之下,商业晶体从乙醇溶液中再结晶得到相同的结晶形式。在室温和低温(167+/-2K)下,通过单晶X射线衍射(SXRD)解析了稳定有序多晶型(商用)的结构;它属于单斜空间群P2 1。用DSC和热激去极化电流(TSDC)研究了CHP的玻璃化转变。获得的玻璃化转变温度和动态脆性值表明CHP是一种中等脆性的玻璃形成物。关于二次松弛,结果表明TSDC检测到的活动性具有JohariGoldstein性质。另一方面,由于TSDC技术的非等温性质以及胆甾相中间相的温度依赖性结构,对上述Tg结果的解释最终增加了困难。(c) 2020爱思唯尔B.V.版权所有。

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