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金铜纳米颗粒的透射电子显微镜和理论分析:原子分布与动态行为

Transmission electron microscopy and theoretical analysis of AuCu nanoparticles: atomic distribution and dynamic behavior.

作者信息

Ascencio J A, Liu H B, Pal U, Medina A, Wang Z L

机构信息

Programa de Investigación y Desarrollo de Ductos, Instituto Mexicano del Petroleo, Eje Central Lázaro Cárdenas No. 152, Col. San Bartolo Atepehuacan, C.P.07730, Mexico D.F., Mexico.

出版信息

Microsc Res Tech. 2006 Jul;69(7):522-30. doi: 10.1002/jemt.20321.

Abstract

Though the application of bimetallic nanoparticles is becoming increasingly important, the local atomistic structure of such alloyed particles, which is critical for tailoring their properties, is not yet very clearly understood. In this work, we present detailed study on the atomistic structure of Au-Cu nanoparticles so as to determine their most stable configurations and the conditions for obtaining clusters of different structural variants. The dynamic behavior of these nanoparticles upon local heating is investigated. AuCu nanoparticles are characterized by high resolution transmission electron microscopy (HRTEM) and energy filtering elemental composition mapping (EFECM), which allowed us to study the internal structure and the elemental distribution in the particles. Quantum mechanical approaches and classic molecular dynamics methods are applied to model the structure and to determine the lowest energy configurations, the corresponding electronic structures, and understand structural transition of clusters upon heating, supported by experimental evidences. Our theoretical results demonstrate only the core/shell bimetallic structure have negative heat of formation, both for decahedra and octahedral, and energetically favoring core/shell structure is with Au covering the core of Cu, whose reverse core/shell structure is not stable and may transform back at a certain temperature. Experimental evidences corroborate these structures and their structural changes upon heating, demonstrating the possibility to manipulate the structure of such bimetallic nanoparticles using extra stimulating energy, which is in accordance with the calculated coherence energy proportions between the different configurations.

摘要

尽管双金属纳米颗粒的应用正变得越来越重要,但这类合金颗粒的局部原子结构,对于定制其性能至关重要,目前尚未被充分理解。在这项工作中,我们对金-铜纳米颗粒的原子结构进行了详细研究,以确定其最稳定的构型以及获得不同结构变体团簇的条件。研究了这些纳米颗粒在局部加热时的动态行为。通过高分辨率透射电子显微镜(HRTEM)和能量过滤元素组成映射(EFECM)对金铜纳米颗粒进行了表征,这使我们能够研究颗粒的内部结构和元素分布。应用量子力学方法和经典分子动力学方法对结构进行建模,并确定最低能量构型、相应的电子结构,以及在实验证据支持下理解加热时团簇的结构转变。我们的理论结果表明,对于十面体和八面体结构,只有核壳双金属结构具有负的形成热,并且在能量上有利于金覆盖铜核的核壳结构,其反向核壳结构不稳定,可能在一定温度下转变回去。实验证据证实了这些结构及其加热时的结构变化,表明利用额外的刺激能量来操纵这类双金属纳米颗粒结构的可能性,这与不同构型之间计算出的相干能量比例一致。

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