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Title: ZnO Nanostructures
Sub-title: Advances in Research and Applications
Edited by: Dana Crawford
ISBN10-13: 1536167738 : 9781536167733
Format: Paperback
Size: 229x152mm
Pages: 200
Weight: .296 Kg.
Published: Nova Science Publishers, Inc - January   2020
List Price: 84.99 Pounds Sterling
Availability: In Stock   Qty Available: 1
Subjects: Nanotechnology
Different ZnO nanostructures are attributed to different electronic properties which are favourable in the application of photocatalysis, sensing and energy harvesting. The non toxic behaviour of ZnO nanostructures lead to the use of this material in environmental sensing and environmental remediation. In ZnO Nanostructures: Advances in Research and Applications, a large-scale synthesis of undoped low-dimensional semiconductor metal oxide nanostructures is performed by simple wet-chemical method using reducing agents at low temperature. The detailed structural, compositional, and optical characterizations of the ZnO nanoparticles were evaluated by powder X-ray diffraction pattern, Fourier-transform infra-red spectroscopy, X-ray photoelectron spectroscopy, electron dispersion spectroscopy and UV-vis. Spectroscopy. Following this, the authors describe the structure electrochemical sensors, listing scientific papers focusing on the detection of different pathogens and analytes, as well as reporting and comparing the performance of the sensors prepared by various groups around the world. The concluding chapter deals with synthesis protocols of ZnO heterostructures along with their role in optoelectronic applications. Their thermodynamic stability and correlation among morphology, defects, and heterostructure with luminating and catalytic properties is also described.
Table of Contents:
  • Preface
  • ZnO Nanostructures for Environmental Applications
  • ZnO Nanostructures: An Environmental Application
  • Electrochemical Biosensors Based on Nanostructured ZnO for Pathogens Detection
  • Luminescence and Catalytic Properties of ZnO and Its Heterostructure: Effect of Morphology and Defects
  • Index.
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