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A Combined Experimental and Theoretical Study on the Formation of Ag Filaments on β‐Ag2MoO4 Induced by Electron Irradiation
Authors:Juan Andrés  Mateus M. Ferrer  Lourdes Gracia  Armando Beltran  Valeria M. Longo  Guilherme H. Cruvinel  Ricardo L. Tranquilin  Elson Longo
Affiliation:1. Departament de Química Física i Analítica, Universitat Jaume I, Castelló de la Plana, Spain;2. INCTMN‐UFSCar, Universidade Federal de S?o Carlos, S?o Carlos, SP, Brazil;3. INCTMN‐UNESP, Universidade Estadual Paulista, Araraquara, SP, Brazil;4. INCTMN‐USP, Universidade de S?o Paulo, Instituto de Física de S?o Carlos, S?o Carlos, SP, Brazil
Abstract:A combined experimental and theoretical study is presented to understand the novel observed nucleation and early evolution of Ag filaments on β‐Ag2MoO4 crystals, driven by an accelerated electron beam from an electronic microscope under high vacuum. The growth process, chemical composition, and the element distribution in these filaments are analyzed in depth at the nanoscale level using field‐emission scanning electron microscopy (FE‐SEM) and transmission electron microscopy (TEM) with energy‐dispersive spectroscopy (EDS) characterization. To complement experimental results, chemical stability, structural and electronic aspects have been studied systematically using first‐principles electronic structure theory within a quantum theory of atoms in molecules (QTAIM) framework. The Ag nucleation and formation on β‐Ag2MoO4 are a result of structural and electronic changes of the AgO4 tetrahedral cluster as a constituent building block of β‐Ag2MoO4, consistent with Ag metallic formation. The formation of Ag filament transforms the β‐Ag2MoO4 semiconductor from n‐ to p‐type concomitant with the appearance of Ag defects.
Keywords:Ag filaments  β  ‐Ag2MoO4     electron beam  semiconductor  topological analysis
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