Andrés Juan, Gracia Lourdes, Gonzalez-Navarrete Patricio, Longo Valeria M, Avansi Waldir, Volanti Diogo P, Ferrer Mateus M, Lemos Pablo S, La Porta Felipe A, Hernandes Antonio C, Longo Elson
Departament de Química Física i Analítica, UJI-Universitat Jaume I, Av. de Vicent Sos Baynat, s/n, Castelló de la Plana 12071, Spain.
1] Departament de Química Física i Analítica, UJI-Universitat Jaume I, Av. de Vicent Sos Baynat, s/n, Castelló de la Plana 12071, Spain [2] Instituto de Química, UNESP-Universidade Estadual Paulista, R. Francisco Degni, 55, Araraquara 14800-900, Brazil.
Sci Rep. 2014 Jun 23;4:5391. doi: 10.1038/srep05391.
In this work, we utilise a combination of theory, computation and experiments to understand the early events related to the nucleation of Ag filaments on α-Ag2WO4 crystals, which is driven by an accelerated electron beam from an electron microscope under high vacuum. The growth process and the chemical composition and elemental distribution in these filaments were analysed in depth at the nanoscale level using TEM, HAADF, EDS and XPS; the structural and electronic aspects were systematically studied in using first-principles electronic structure theory within QTAIM framework. The Ag nucleation and formation on α-Ag2WO4 is a result of the order/disorder effects generated in the crystal by the electron-beam irradiation. Both experimental and theoretical results show that this behavior is associated with structural and electronic changes of the [AgO2] and [AgO4] clusters and, to a minor extent, to the [WO6] cluster; these clusters collectively represent the constituent building blocks of α-Ag2WO4.
在这项工作中,我们利用理论、计算和实验相结合的方法,来理解与α-Ag2WO4晶体上银细丝成核相关的早期事件,这一过程由高真空下电子显微镜的加速电子束驱动。使用透射电子显微镜(TEM)、高角度环形暗场成像(HAADF)、能谱仪(EDS)和X射线光电子能谱(XPS)在纳米尺度上深入分析了这些细丝的生长过程、化学成分和元素分布;在量子拓扑原子分子理论(QTAIM)框架内,使用第一性原理电子结构理论系统地研究了结构和电子方面的问题。α-Ag2WO4上的银成核和形成是电子束辐照在晶体中产生的有序/无序效应的结果。实验和理论结果均表明,这种行为与[AgO2]和[AgO4]团簇的结构和电子变化有关,在较小程度上也与[WO6]团簇有关;这些团簇共同构成了α-Ag2WO4的组成结构单元。