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首页> 外文期刊>Journal of Molecular Liquids >Glass transition behavior of perpendicularly aligned thermotropic liquid crystalline phases consisting of long-chain trehalose lipids
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Glass transition behavior of perpendicularly aligned thermotropic liquid crystalline phases consisting of long-chain trehalose lipids

机译:由长链海藻糖脂质组成的垂直对齐热液晶阶段的玻璃过渡行为

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The glass-forming ability of amphiphilic lipids has attracted attention owing to their specific potent applications. In this study, we used an aligned thermotropic liquid crystalline (LC) film made from a long-chain trehalose lipids (LTLs) and used the 2 theta/omega scan analysis of the X-ray measurement to gain some insights into the glass transition behavior of glycolipids. A highly perpendicularly aligned single crystal-like film, in which the film thickness corresponds closely to the correlation length of the fluid lamellar (L-alpha) LC phase, was obtained after thermal annealing under reduced pressure. The temperature-dependence changes in the bilayer length of various LTL nanofilms, together with LTL powder samples, and film thickness of various LTL films were analyzed. As a result, the glass transition temperature (T-g) of LTL was successfully determined. T-g was the temperature at which the disappearance of the difference in the degree of structural relaxation occurred for the different cooling rates or the point of intersection of two extrapolated linear graphs with different thermal expanding properties. The longest bilayer length was observed at around T-g. Importantly, the layer number above T-g increased because of the development of thermal motion parallel to the film and subsequent rearrangement, whereas it was constant below T-g, persisting the layer structure due to the frozen state of sugar moiety. The experimental evidence suggested a unique feature of one glycolipid layer accompanying the glass transition for the L-alpha LC phase consisting of a long-chain glycolipid. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于其特定的有效应用,两亲性脂质的玻璃形成能力引起了注意力。在该研究中,我们使用由长链海藻糖脂质(LTLS)制成的对齐的热致液晶(LC)膜,并使用了X射线测量的2个/ Omega扫描分析,以获得玻璃过渡行为的一些见解糖脂。在减压下,在减压下热退火之后获得高度垂直对齐的单晶硅样膜,其中膜厚度与流体层层(L-α)LC相的相关长度相对应。分析了各种LTL纳米丝的双层长度的温度依赖性变化,以及LTL粉末样品和各种LTL膜的膜厚度。结果,成功测定了LT1的玻璃化转变温度(T-G)。 T-G是用于不同冷却速率的结构松弛程度的差异的差异的温度或两个具有不同热膨胀性能的两个外推线性图的点。在T-g周围观察到最长的双层长度。重要的是,由于与膜平行的热运动和随后重排的热运动的发展,层数增加,而随后的重排恒定,恒定是恒定的,因此由于糖部分的冷冻状态持续到层结构。实验证据表明,伴随着由长链糖脂组成的L-αLC相的玻璃化转变的一种糖脂层的独特特征。 (c)2019 Elsevier B.v.保留所有权利。

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