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Synthesis of Diverse Ag2O Crystals for Facet-Dependent Photocatalytic Activity and Electrical Conductivity Measurements
Thesis

Synthesis of Diverse Ag2O Crystals for Facet-Dependent Photocatalytic Activity and Electrical Conductivity Measurements

Chen, Ying Jui
Masters, 國立清華大學, 化學系
2015

Abstract

氧化銀 晶面效應 光催化活性 導電性量測 Silver oxide Facet-dependent properties Photocatalytic activity Electrical conductivity measurement
Abstract Sub- to micrometer-sized Ag2O cubes, great rhombicuboctahedra, cuboctahedra, corner-truncated octahedra, octahedra, and rhombic dodecahedra have been synthesized at room temperature using simple molar ratios of NH4NO3, NaOH, and AgNO3 solutions with a short reaction time. In addition, tuning the concentration of NH3 in the solution can provide more particle morphologies including edge- and corner-truncated cubes, small rhombicuboctahedra, and edge-truncated octahedra to enrich Ag2O shape diversity. X-ray photoelectron spectroscopy (XPS) spectra indicate surface composition of various crystals as pure Ag2O. Diffuse reflectance spectra have been used to determine the band gap of Ag2O cubes. Ag2O cubes, octahedra, and rhombic dodecahedra having the same total particle surface area were used for facet-dependent photocatalytic activity comparison in the degradation of methyl orange. Cubes are comparably highly active for this reaction, while octahedra and rhombic dodecahedra give moderate and low catalytic activities, respectively. Electron paramagnetic resonance (EPR) measurements confirm this reactivity order. Although all Ag2O samples show significant etching during photocatalysis, metallic silver is not produced. Furthermore, the facet-dependent electrical conductivity behaviors have also been measured for the three different faces of Ag2O. The Ag2O {111} faces are most electrically conductive, the {100} faces only moderately conductive at high applied voltages, and the {110} faces are non-conductive. The results are the same as those obtained for Cu2O crystals.

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