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AlO晶界处的纳米级局域声子

Nanoscale Localized Phonons at AlO Grain Boundaries.

作者信息

Yan Jingyuan, Shi Ruochen, Wei Jiake, Li Yuehui, Qi Ruishi, Wu Mei, Li Xiaomei, Feng Bin, Gao Peng, Shibata Naoya, Ikuhara Yuichi

机构信息

Institute of Engineering Innovation, The University of Tokyo, Tokyo 113-8656, Japan.

Electron Microscopy Laboratory, School of Physics, Peking University, Beijing 100871, China.

出版信息

Nano Lett. 2024 Mar 20;24(11):3323-3330. doi: 10.1021/acs.nanolett.3c04149. Epub 2024 Mar 11.

Abstract

Nanoscale defects like grain boundaries (GBs) would introduce local phonon modes and affect the bulk materials' thermal, electrical, optical, and mechanical properties. It is highly desirable to correlate the phonon modes and atomic arrangements for individual defects to precisely understand the structure-property relation. Here we investigated the localized phonon modes of AlO GBs by combination of the vibrational electron energy loss spectroscopy (EELS) in scanning transmission electron microscope and density functional perturbation theory (DFPT). The differences between GB and bulk obtained from the vibrational EELS show that the GB exhibited more active vibration at the energy range of <50 meV and >80 meV, and further DFPT results proved the wide distribution of bond lengths at GB are the main factor for the emergence of local phonon modes. This research provides insights into the phonon-defect relation and would be of importance in the design and application of polycrystalline materials.

摘要

诸如晶界(GBs)之类的纳米级缺陷会引入局部声子模式,并影响块状材料的热、电、光和机械性能。非常希望将单个缺陷的声子模式与原子排列相关联,以精确理解结构-性能关系。在这里,我们通过扫描透射电子显微镜中的振动电子能量损失谱(EELS)和密度泛函微扰理论(DFPT)相结合的方法,研究了AlO晶界的局域声子模式。从振动EELS获得的晶界与块状材料之间的差异表明,晶界在<50 meV和>80 meV的能量范围内表现出更活跃的振动,进一步的DFPT结果证明晶界处键长的广泛分布是局部声子模式出现的主要因素。这项研究为声子-缺陷关系提供了见解,并且在多晶材料的设计和应用中具有重要意义。

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