Nanostructured Zinc Oxide Books

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Nanostructured Zinc Oxide


Nanostructured Zinc Oxide
  • Author : Kamlendra Awasthi
  • Publisher : Elsevier
  • Release : 2020-09-01
  • ISBN : 9780128189016
  • Language : En, Es, Fr & De
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Nanostructured Zinc Oxide covers the various routes for the synthesis of different types of nanostructured zinc oxide including; 1D (nanorods, nanowires etc.), 2D and 3D (nanosheets, nanoparticles, nanospheres etc.). This comprehensive overview provides readers with a clear understanding of the various parameters controlling morphologies. The book also reviews key properties of ZnO including optical, electronic, thermal, piezoelectric and surface properties and techniques in order to tailor key properties. There is a large emphasis in the book on ZnO nanostructures and their role in optoelectronics. ZnO is very interesting and widely investigated material for a number of applications. This book presents up-to-date information about the ZnO nanostructures-based applications such as gas sensing, pH sensing, photocatalysis, antibacterial activity, drug delivery, and electrodes for optoelectronics. Reviews methods to synthesize, tailor, and characterize 1D, 2D, and 3D zinc oxide nanostructured materials Discusses key properties of zinc oxide nanostructured materials including optical, electronic, thermal, piezoelectric, and surface properties Addresses most relevant zinc oxide applications in optoelectronics such as light-emitting diodes, solar cells, and sensors

Recent Progress in Nanostructured Zinc Oxide Grown on Fabric for Wearable Thermoelectric Power Generator with UV Shielding


Recent Progress in Nanostructured Zinc Oxide Grown on Fabric for Wearable Thermoelectric Power Generator with UV Shielding
  • Author : Pandiyarasan Veluswamy
  • Publisher :
  • Release : 2018
  • ISBN : OCLC:1154264806
  • Language : En, Es, Fr & De
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Traditional materials for thermoelectric such as bismuth telluride have been studied and utilized commercially for the last half century, but recent advancements in materials selection are one of the principal function of the active thermoelectric device as it determines the reliability of the fabrication regarding technical and economic aspects. Recently, many researcher's efforts have been made to utilize oxide nanomaterials for wearable thermoelectric power generator (WTPG) applications which may provide environmental stable, mechanical flexibility, and light weight with low cost of manufacturing. In precise, fabric containing oxide metals have shown great promise as P−/N-type materials with improved transport and UV shielding properties. On the other hand, we have focused on ZnO nanostructures as a high-efficiency WTPG material because they are non-toxic to skin, inexpensive and easy to obtain and possess attractive electronic properties, which means that they are available for clothing with low-cost fabrication. To our observation, we are chaptering about the thermoelectric properties of ZnO and their composite nanostructures coated cotton fabric via the solvothermal method for the first time.

Zinc Oxide Nanostructures Synthesis and Characterization


Zinc Oxide Nanostructures  Synthesis and Characterization
  • Author : Sotirios Baskoutas
  • Publisher : MDPI
  • Release : 2018-12-04
  • ISBN : 9783038973027
  • Language : En, Es, Fr & De
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This book is a printed edition of the Special Issue "Zinc Oxide Nanostructures: Synthesis and Characterization" that was published in Materials

Nanostructured Zinc Oxide Sensors


Nanostructured Zinc Oxide Sensors
  • Author : Mohammad Rabia Alenezi
  • Publisher :
  • Release : 2014
  • ISBN : OCLC:892860901
  • Language : En, Es, Fr & De
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Zinc Oxide Nanostructures


Zinc Oxide Nanostructures
  • Author : Magnus Willander
  • Publisher : CRC Press
  • Release : 2014-07-22
  • ISBN : 9789814411349
  • Language : En, Es, Fr & De
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Zinc oxide (ZnO) in its nanostructured form is emerging as a promising material with great potential for the development of many smart electronic devices. This book presents up-to-date information about various synthesis methods to obtain device-quality ZnO nanostructures. It describes both high-temperature (over 100° C) and low-temperature (under 100° C) approaches to synthesizing ZnO nanostructures; device applications for technical and medical devices, light-emitting diodes, electrochemical sensors, nanogenerators, and photodynamic therapy; and the concept of self-powered devices and systems using ZnO nanostructures. The book emphasizes the utilization of non-conventional substrates such as plastic, paper, and textile as new platforms for developing electronics.