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全球三酰基甘油在熔融状态下的小角 X 射线散射数据分析(第一部分)。

Global Small-Angle X-ray Scattering Data Analysis of Triacylglycerols in the Molten State (Part I).

机构信息

School of Food Science and Nutrition , University of Leeds , Leeds LS2 9JT , U.K.

Department of Materials Meet Life, Empa , Swiss Federal Laboratories for Materials Science and Technology , 8600 St. Gallen , Switzerland.

出版信息

J Phys Chem B. 2018 Nov 15;122(45):10320-10329. doi: 10.1021/acs.jpcb.8b06704. Epub 2018 Oct 31.

Abstract

The study of triacylglycerols (TAGs) in their molten state is of fundamental importance for a deeper understanding of the TAG crystallization processes, being highly relevant for both manufacturing and medical applications. Although different models have been proposed to explain the nanostructured nature of the fluid state of TAGs, none of them are fully satisfactory. In this paper, we propose a new model consisting of positionally uncorrelated lamellar TAG assemblies embedded in an isotropic medium that assist as prenucleating structures. This model was validated by applying a novel global fitting method, resulting in an excellent agreement with the small-angle X-ray scattering data. A deeper analysis of the scattering patterns at different temperatures, both in cooling and heating directions, allowed us further to detect the crystalline traces of TAGs even after heating to 40 °C and record, on cooling, the onset of crystallization at 30-25 °C. The application of the presented novel model not only explains the outstandingly structured fluid of molten TAGs, but also lays the basis for analyzing first the crystallization steps in greater detail, which is outlined in our follow-up paper "Global Small-Angle X-ray Scattering Data Analysis of Triacylglycerols in the α-Phase (Part II)".

摘要

研究三酰基甘油(TAGs)在熔融状态下的性质对于深入了解TAG 结晶过程至关重要,这对制造和医疗应用都具有重要意义。尽管已经提出了不同的模型来解释 TAG 流体状态的纳米结构性质,但没有一个是完全令人满意的。在本文中,我们提出了一个新的模型,由位置上不相关的层状 TAG 组装体嵌入各向同性介质中组成,作为预成核结构。该模型通过应用一种新的全局拟合方法进行了验证,与小角 X 射线散射数据吻合得非常好。在不同温度下,无论是在冷却还是加热方向上,对散射图案进行更深入的分析,使我们能够进一步检测到 TAG 即使在加热到 40°C 后仍存在的结晶痕迹,并在冷却时记录下在 30-25°C 时开始结晶。所提出的新模型的应用不仅解释了熔融 TAG 非常结构化的流体,而且还为更详细地分析最初的结晶步骤奠定了基础,这在我们的后续论文“α-相(第二部分)三酰基甘油的全局小角 X 射线散射数据分析”中有概述。

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