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Solution-Based Preparation, Characterization and in Situ Thermodynamics Kinetics Investigation of Cadmium Molybdate Nano-Octahedra
Author: LiYanFen
Tutor: HuangZaiYin
School: Guangxi University for Nationalities
Course: Applied Chemistry
Keywords: nanostructure cadmium molybdate reverse-microemulsion optical properties electrochemical analyses calorimetry technique thermodynamics kinetics
CLC: TB383.1
Type: Master's thesis
Year: 2011
Downloads: 65
Quote: 1
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Abstract
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As an important inorganic nanomaterial, cadmium molybdate (CdMoO4) with a scheelite structure has received great research interest over the past few decades for its potential applications in various ?elds, such as optical ?bers, scintillators, photoluminescence, laser, magnetic properties, catalysis, humidity sensors, et al. This paper focused on the controlled synthesis of typical cadmium molybdate nanostructures via a facile liquid-phase route, evaluating the relationship between the shape and properties of the as-fabricated nanoparticles, and investigating the thermodynamics and kinetic of in situ growth and reaction of CdMoO4 nanomaterials for the first time.Uniform CdMoO4 nano-octahedra have been designed and synthesized by employing a nonionic TritonX-100-based reverse microemulsion technique at room temperature. A possible mechanism for the formation of CdMoO4 nano-octahedra has been proposed by altering the experimental parameters.The analysis on the photoluminescence spectra of the CdMoO4 crystals with various sizes and morphologies reveals that luminescence properties of CdMoO4 are sensitive to its structure and strongly dependent on the crystal size. The CV studies show that CdMoO4 nano-octahedra could apparently enhance the direct electron transfer of the modi?ed electrode. The present work indicates that it will be a hopeful nanomaterial which could be used in photoelectronic and sensor.The in situ growth and reaction thermal efficiency of CdMoO4 was first explored by adopting calorimetry technique.
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