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用于探测胶体结构与动力学的同步加速器散射方法的最新进展。

Recent advances in synchrotron scattering methods for probing the structure and dynamics of colloids.

作者信息

Narayanan Theyencheri

机构信息

ESRF - The European Synchrotron, Grenoble 38043, France.

出版信息

Adv Colloid Interface Sci. 2024 Mar;325:103114. doi: 10.1016/j.cis.2024.103114. Epub 2024 Feb 22.

Abstract

Recent progress in synchrotron based X-ray scattering methods applied to colloid science is reviewed. An important figure of merit of these techniques is that they enable in situ investigations of colloidal systems under the desired thermophysical and rheological conditions. An ensemble averaged simultaneous structural and dynamical information can be derived albeit in reciprocal space. Significant improvements in X-ray source brilliance and advances in detector technology have overcome some of the limitations in the past. Notably coherent X-ray scattering techniques have become more competitive and they provide complementary information to laboratory based real space methods. For a system with sufficient scattering contrast, size ranges from nm to several μm and time scales down to μs are now amenable to X-ray scattering investigations. A wide variety of sample environments can be combined with scattering experiments further enriching the science that could be pursued by means of advanced X-ray scattering instruments. Some of these recent progresses are illustrated via representative examples. To derive quantitative information from the scattering data, rigorous data analysis or modeling is required. Development of powerful computational tools including the use of artificial intelligence have become the emerging trend.

摘要

综述了基于同步加速器的X射线散射方法在胶体科学中的最新进展。这些技术的一个重要品质因数是,它们能够在所需的热物理和流变条件下对胶体系统进行原位研究。尽管是在倒易空间中,但可以获得系综平均的同时结构和动力学信息。X射线源亮度的显著提高和探测器技术的进步克服了过去的一些限制。值得注意的是,相干X射线散射技术变得更具竞争力,并且它们为基于实验室的实空间方法提供了补充信息。对于具有足够散射对比度的系统,现在纳米到几微米的尺寸范围以及低至微秒的时间尺度都适合进行X射线散射研究。各种各样的样品环境可以与散射实验相结合,进一步丰富了借助先进X射线散射仪器可以开展的科学研究。通过代表性例子说明了其中一些最新进展。为了从散射数据中获得定量信息,需要进行严格的数据分析或建模。包括使用人工智能在内的强大计算工具的开发已成为新趋势。

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