Metal Oxide Nanostructures And Their Applications PdfBy Emmeline L. In and pdf 21.05.2021 at 10:03 9 min read
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- Metal Oxide Nanostructures
- Metal Oxide Nanostructures and Their Applications
- Semiconducting metal oxide nanostructures for scalable sensing applications
- UC Berkeley
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Introduction 2. Synthesis and design of metal oxide nanostructures 3. Structural, morphological, optical and electronic properties of the nanostructures 4. Chromogenic applications 5. Electronic and sensing applications.
Metal Oxide Nanostructures
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Text Search Object Description Title Semiconducting metal oxide nanostructures for scalable sensing applications Author Wang , Xiaoli Author email xiaoliw usc.
Gundersen, Martin A. Abstract Semiconducting metal oxides SMO are widely known to respond strongly to changes in their environment through their surface chemistry. In this thesis two approaches are demonstrated to overcome this problem. The fabrication process requires only 2 conventional photolithography steps that are scalable for different wafer sizes and can use a versatile range of substrates. The sensors are demonstrated to have strong and fast response to pH, and a stable surface chemistry is used to apply the nanoribbon sensors to specific and selective biomarker detection.
Quantitative detection of the cardiac biomarkers troponin, creatine kinase—MB, and B-type natriuretic peptide BNP were achieved within clinically relevant concentrations. Electronic access is being provided by the USC Libraries in agreement with the author, as the original true and official version of the work, but does not grant the reader permission to use the work if the desired use is covered by copyright. It is the author, as rights holder, who must provide use permission if such use is covered by copyright.
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Metal Oxide Nanostructures and Their Applications
Nanostructured transition-metal oxides exhibit excellent properties, such as ferromagnetic, ferroelectric, photoluminescence and semiconductive behaviors, etc. The band gap and electronic structure of these oxides can be controlled by size and dimensions; they can also be used in a wide range of applications including microelectronics, energy storage, sensors, and biomedicine due to their tunable chemical and physical properties. Here, we give a comprehensive review of the controllable growth of some typical transition-metal oxide nanostructures e. If you are not the author of this article and you wish to reproduce material from it in a third party non-RSC publication you must formally request permission using Copyright Clearance Center. Go to our Instructions for using Copyright Clearance Center page for details.
Semiconducting metal oxide nanostructures for scalable sensing applications
Surface morphologies and crystal structures were investigated through scanning electron microscopy and Raman spectroscopy. Furthermore, different batches of sensors have been prepared, and their sensing performances towards carbon monoxide and nitrogen dioxide have been explored. Moreover, metal oxide nanowires have been integrated into an electronic nose and successfully applied to discriminate between drinking and contaminated water. Nanotechnology is the base for improving knowledge about materials and phenomena at the nanometric scale.
In recent years, nanostructured materials have attracted wide attention due to their fascinating optical and electrical properties, which make these materials potentially suitable for applications in electronics, optics, and photonics. Some metal oxides have a wide variety of morphologies such as nanowires, nanorods, nanotubes, nanorings, and nanobelts. Synthesis and investigation of these metal oxide nanostructures are beneficial not only for the understanding of the fundamental phenomena in low dimensional systems, but also for development of new-generation nanodevices with high performance. We invite authors to submit original research as well as review articles on the synthesis, properties, and applications of metal oxide nanostructures. Journal overview. Special Issues.
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Skip to search form Skip to main content You are currently offline. Some features of the site may not work correctly. Umar Published Materials Science. Recently, researchers on nanoparticles and nanostructures has received a great deal of attention not only in the area of synthesis and characterization but also in their potential application in various high-technological applications. Nanomaterials are widely used not only for environmental and biological applications but also for electronic and sensing applications.
Lin-Hua Xu, Dnyaneshwar S. In recent years, nanostructured materials have attracted wide attention due to their fascinating optical and electrical properties, which make these materials potentially suitable for applications in electronics, optics, photonics, and sensors. Some metal oxides show a wide variety of morphologies such as nanowires, nanorods, nanotubes, nanorings, and nanobelts. Synthesis and investigation of these metal-oxide nanostructures are beneficial not only for understanding the fundamental phenomena in low dimensional systems, but also for developing new-generation nanodevices with high performance. This special issue is focused on synthesis, properties, characterizations, and numerical modeling of metal-oxide nanomaterials and nanostructures with potential applications in photocatalysts, wastewater purification, chemical sensors, and so on.
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