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揭示互溶体系中玻璃化转变对混合热力学的依赖性。

Unveiling the dependence of glass transitions on mixing thermodynamics in miscible systems.

作者信息

Tu Wenkang, Wang Yunxi, Li Xin, Zhang Peng, Tian Yongjun, Jin Shaohua, Wang Li-Min

机构信息

State Key Lab of Metastable Materials Science and Technology, and College of Materials Science and Engineering, Yanshan University, Qinhuangdao, Hebei, 066004 China.

School of Materials Science and Engineering, Beijing Institute of Technology, Beijing, 100081 China.

出版信息

Sci Rep. 2015 Feb 17;5:8500. doi: 10.1038/srep08500.

Abstract

The dependence of the glass transition in mixtures on mixing thermodynamics is examined by focusing on enthalpy of mixing, ΔHmix with the change in sign (positive vs. negative) and magnitude (small vs. large). The effects of positive and negative ΔHmix are demonstrated based on two isomeric systems of o- vs. m-methoxymethylbenzene (MMB) and o- vs. m-dibromobenzene (DBB) with comparably small absolute ΔHmix. Two opposite composition dependences of the glass transition temperature, Tg, are observed with the MMB mixtures showing a distinct negative deviation from the ideal mixing rule and the DBB mixtures having a marginally positive deviation. The system of 1, 2- propanediamine (12PDA) vs. propylene glycol (PG) with large and negative ΔHmix is compared with the systems of small ΔHmix, and a considerably positive Tg shift is seen. Models involving the properties of pure components such as Tg, glass transition heat capacity increment, ΔCp, and density, ρ, do not interpret the observed Tg shifts in the systems. In contrast, a linear correlation is revealed between ΔHmix and maximum Tg shifts.

摘要

通过关注混合焓ΔHmix的符号变化(正与负)和大小(小与大),研究了混合物中玻璃化转变对混合热力学的依赖性。基于邻甲氧基甲基苯与间甲氧基甲基苯(MMB)以及邻二溴苯与间二溴苯(DBB)这两个具有相对较小绝对ΔHmix的异构体体系,展示了正ΔHmix和负ΔHmix的影响。观察到玻璃化转变温度Tg有两种相反的组成依赖性,MMB混合物表现出明显偏离理想混合规则的负偏差,而DBB混合物有略微的正偏差。将具有大的负ΔHmix的1,2 - 丙二胺(12PDA)与丙二醇(PG)体系与小ΔHmix体系进行比较,发现Tg有相当大的正向偏移。涉及纯组分性质(如Tg、玻璃化转变热容增量ΔCp和密度ρ)的模型无法解释所观察到的体系中Tg的变化。相反,发现ΔHmix与最大Tg变化之间存在线性相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5cc/4330544/ad757f04b75e/srep08500-f1.jpg

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