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衬底贯穿式微衍射的能力:Patterson 函数直接法在抛光薄片同步辐射数据中的应用。

Capabilities of through-the-substrate microdiffraction: application of Patterson-function direct methods to synchrotron data from polished thin sections.

机构信息

Institut de Ciencia de Materials de Barcelona, CSIC, Campus de la UAB, 08193 Bellaterra, Catalonia, Spain.

出版信息

J Synchrotron Radiat. 2011 Nov;18(Pt 6):891-8. doi: 10.1107/S0909049511038830. Epub 2011 Oct 6.

Abstract

Some theoretical and practical aspects of the application of transmission microdiffraction (µXRD) to thin sections (≤30 µm thickness) of samples fixed or deposited on substrates are discussed. The principal characteristic of this technique is that the analysed micro-sized region of the thin section is illuminated through the substrate (tts-µXRD). Fields that can benefit from this are mineralogy, petrology and materials sciences since they often require in situ lateral studies to follow the evolution of crystalline phases or to determine new crystal structures in the case of phase transitions. The capability of tts-µXRD for performing structural studies with synchrotron radiation is shown by two examples. The first example is a test case in which tts-µXRD intensity data of pure aerinite are processed using Patterson-function direct methods to directly solve the crystal structure. In the second example, tts-µXRD is used to study the transformation of laumonite into a new aluminosilicate for which a crystal structure model is proposed.

摘要

本文讨论了透射微衍射(µXRD)在固定或沉积在基底上的薄片(≤30μm 厚度)上应用的一些理论和实际方面。该技术的主要特点是通过基底对薄片的微区进行分析(tts-µXRD)。矿物学、岩石学和材料科学等领域将受益于这种技术,因为它们通常需要进行原位横向研究来跟踪晶体相的演化,或者在相变的情况下确定新的晶体结构。通过两个例子展示了 tts-µXRD 利用同步辐射进行结构研究的能力。第一个例子是一个测试案例,其中使用 Patterson 函数直接法处理纯 aerinite 的 tts-µXRD 强度数据,以直接求解晶体结构。在第二个例子中,tts-µXRD 用于研究 laumonite 向新的铝硅酸盐的转变,为此提出了一个晶体结构模型。

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