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现代飞行时间中子衍射仪固有效应在实空间对分布函数建模中的精确影响。

Precise implications for real-space pair distribution function modeling of effects intrinsic to modern time-of-flight neutron diffractometers.

作者信息

Olds Daniel, Saunders Claire N, Peters Megan, Proffen Thomas, Neuefeind Joerg, Page Katharine

机构信息

Oak Ridge National Laboratory, One Bethel Valley Road, PO Box 2008, MS-6454, Oak Ridge, TN 37831-6454, USA.

California Institute of Technology, 1200 East California Boulevard, Pasadena, California 91125, USA.

出版信息

Acta Crystallogr A Found Adv. 2018 Jul 1;74(Pt 4):293-307. doi: 10.1107/S2053273318003224. Epub 2018 Jun 6.

Abstract

Total scattering and pair distribution function (PDF) methods allow for detailed study of local atomic order and disorder, including materials for which Rietveld refinements are not traditionally possible (amorphous materials, liquids, glasses and nanoparticles). With the advent of modern neutron time-of-flight (TOF) instrumentation, total scattering studies are capable of producing PDFs with ranges upwards of 100-200 Å, covering the correlation length scales of interest for many materials under study. Despite this, the refinement and subsequent analysis of data are often limited by confounding factors that are not rigorously accounted for in conventional analysis programs. While many of these artifacts are known and recognized by experts in the field, their effects and any associated mitigation strategies largely exist as passed-down `tribal' knowledge in the community, and have not been concisely demonstrated and compared in a unified presentation. This article aims to explicitly demonstrate, through reviews of previous literature, simulated analysis and real-world case studies, the effects of resolution, binning, bounds, peak shape, peak asymmetry, inconsistent conversion of TOF to d spacing and merging of multiple banks in neutron TOF data as they directly relate to real-space PDF analysis. Suggestions for best practice in analysis of data from modern neutron TOF total scattering instruments when using conventional analysis programs are made, as well as recommendations for improved analysis methods and future instrument design.

摘要

总散射和对分布函数(PDF)方法可用于详细研究局部原子的有序和无序状态,包括传统上无法进行Rietveld精修的材料(非晶材料、液体、玻璃和纳米颗粒)。随着现代中子飞行时间(TOF)仪器的出现,总散射研究能够生成范围超过100 - 200 Å的PDF,涵盖了许多正在研究的材料所关注的相关长度尺度。尽管如此,数据的精修和后续分析往往受到一些混杂因素的限制,而这些因素在传统分析程序中并未得到严格考虑。虽然这些假象中的许多已为该领域的专家所熟知和认可,但其影响以及任何相关的缓解策略在很大程度上作为该领域传承下来的“部落”知识存在,尚未在统一的展示中得到简洁的论证和比较。本文旨在通过对以往文献的综述、模拟分析和实际案例研究,明确展示分辨率、分箱、边界、峰形、峰不对称性、TOF到d间距的不一致转换以及中子TOF数据中多个组的合并等因素与实空间PDF分析直接相关时的影响。针对使用传统分析程序分析现代中子TOF总散射仪器数据时的最佳实践提出了建议,并对改进分析方法和未来仪器设计提出了建议。

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