Zhu He, Huang Yalan, Ren Jincan, Zhang Binghao, Ke Yubin, Jen Alex K-Y, Zhang Qiang, Wang Xun-Li, Liu Qi
Department of Physics City University of Hong Kong Hong Kong 999077 P. R. China.
China Spallation Neutron Source Institute of High Energy Physics Chinese Academy of Science Dongguan 523000 P. R. China.
Adv Sci (Weinh). 2021 Jan 22;8(6):2003534. doi: 10.1002/advs.202003534. eCollection 2021 Mar.
The correlation between structure and function lies at the heart of materials science and engineering. Especially, modern functional materials usually contain inhomogeneities at an atomic level, endowing them with interesting properties regarding electrons, phonons, and magnetic moments. Over the past few decades, many of the key developments in functional materials have been driven by the rapid advances in short-range crystallographic techniques. Among them, pair distribution function (PDF) technique, capable of utilizing the entire Bragg and diffuse scattering signals, stands out as a powerful tool for detecting local structure away from average. With the advent of synchrotron X-rays, spallation neutrons, and advanced computing power, the PDF can quantitatively encode a local structure and in turn guide atomic-scale engineering in the functional materials. Here, the PDF investigations in a range of functional materials are reviewed, including ferroelectrics/thermoelectrics, colossal magnetoresistance (CMR) magnets, high-temperature superconductors (HTSC), quantum dots (QDs), nano-catalysts, and energy storage materials, where the links between functions and structural inhomogeneities are prominent. For each application, a brief description of the structure-function coupling will be given, followed by selected cases of PDF investigations. Before that, an overview of the theory, methodology, and unique power of the PDF method will be also presented.
结构与功能之间的关联是材料科学与工程的核心所在。特别是,现代功能材料通常在原子层面存在不均匀性,这赋予了它们在电子、声子和磁矩方面的有趣特性。在过去几十年里,功能材料领域的许多关键进展都得益于短程晶体学技术的快速发展。其中,能够利用整个布拉格散射和漫散射信号的对分布函数(PDF)技术,作为一种用于检测偏离平均结构的局部结构的强大工具脱颖而出。随着同步辐射X射线、散裂中子以及先进计算能力的出现,PDF能够定量地编码局部结构,进而指导功能材料的原子尺度工程。在此,本文综述了一系列功能材料中的PDF研究,包括铁电体/热电体、巨磁电阻(CMR)磁体、高温超导体(HTSC)、量子点(QD)、纳米催化剂和储能材料,这些材料中功能与结构不均匀性之间的联系十分显著。对于每种应用,将简要描述结构 - 功能耦合,随后给出PDF研究的选定案例。在此之前,还将介绍PDF方法的理论、方法和独特优势。