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"In Zinc Oxide: Production, Properties and Applications, the authors first provide a summary of the natural sources available for the synthesis of zinc oxide nanoparticles, enlisting some plant-mediated synthesized zinc oxide nanoparticles showing promising antimicrobial, antioxidant, cytotoxic and photocatalytic properties. Important technological opportunities and challenges emphasizing the electrical and optoelectronic features of elongated zinc oxide nanoparticle nanosystems are reviewed. The various nonlinear optical phenomenon observed in zinc oxide thin film, including nonlinear absorption, nonlinear refraction, nonlinear scattering and harmonic generations are introduced. Selected literature on the use of zinc oxide nanoparticles for the immobilization of enzymes is reviewed, as well as the use of zinc oxide nanoparticle/enzyme systems in the fabrication of biosensors. The authors explore transition metal doped zinc oxide nanoparticles for a wide range of catalytic organic reactions, further exploring their catalytic applications for organic transformations at mild reaction conditions. The basic concepts behind the development of nanostructured zinc oxide nanoparticles, including the solid state reaction, hydrothermal method, solvothermal method and co-precipitation method are discussed. Lastly, a facile, eco-friendly synthesis of zinc oxide nanoparticles using the peel extract of Musa paradisiaca L, Punica granatum L, and Citrus reticulata Blanco as bioreducing agent is reported"--
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Zinc --- Zinc oxide. --- Metallurgy.
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Hydrogen. --- Deuterium. --- Zinc oxide.
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This dissertation by Ebrahim Chalangar focuses on the synthesis and characterization of zinc oxide (ZnO) nanocomposites for electronic and optoelectronic applications. It investigates two primary approaches: substrate-free random synthesis and template-assisted selective area synthesis. The research aims to improve the dispersity, electrical conductivity, and optical properties of ZnO/graphene composites. The study highlights the development of a cost-effective technique for producing vertically aligned ZnO nanorods, which enhances their alignment and surface density. The findings suggest that these high-quality ZnO/graphene nanocomposites could lead to novel devices with enhanced performance and lower fabrication costs, making them viable for industrial applications.
Zinc oxide. --- Graphene.
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"Zinc oxide (ZnO) is an n-type semiconductor with versatile applications such as optical devices in ultraviolet region, piezoelectric transducers, transparent electrode for solar cells and gas sensors. This book "ZnO Thin Films: Properties, Performance and Applications" gives a deep insight in the intriguing science of zinc oxide thin films. It is devoted to cover the most recent advances and reviews the state of the art of ZnO thin films applications involving energy harvesting, microelectronics, magnetic devices, photocatalysis, photovoltaics, optics, thermoelectricity, piezoelectricity, electrochemistry, temperature sensing. It serves as a fundamental information source on the techniques and methodologies involved in zinc oxide thin films growth, characterization, post-deposition plasma treatments and device processing. This book will be invaluable to the experts to consolidate their knowledge and provide insight and inspiration to beginners wishing to learn about zinc oxide thin films"--
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This dissertation by Kamran ul Hasan explores the synthesis and application of graphene and zinc oxide (ZnO) for nano-biosensing technologies. It details the properties and performance of these materials in devices such as field-effect transistors, light-emitting diodes, UV detectors, and biosensors. The study emphasizes the remarkable potential of graphene, a single layer of carbon atoms, and ZnO, a wide bandgap semiconductor, in various applications due to their exceptional electrical, optical, and catalytic properties. The work is intended for researchers and professionals in nanotechnology and materials science, aiming to advance the development of future electronic and biosensing devices.
Graphene. --- Zinc oxide.
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