Growth of ZnO Nanorods using Hydrothermal for Gas Sensing Application
Amol Uttam Pawar, Sandip Dhobale, Ravindrasinh G. Pardeshi, Kishor M. Sonawane
Abstract
Amol Uttam Pawar, Sandip Dhobale, Ravindrasinh G. Pardeshi, Kishor M. Sonawane
Abstract
In this paper; synthesis of ZnO nanorods by hydrothermal route with various parameters has been reported. C growth of nanorods and wurtzite (hexagonal) crystal structure is confirmed by XRD. The SEM images show oriented growth of nanorods with size of 200 nm to 500 nm. Effect of s temperature on growth of the ZnO nanorods has been discussed. Room temperature sensing of H has been studied. The ZnO nanorods show response and recovery times of 3
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In this paper; synthesis of ZnO nanorods by hydrothermal route with various parameters has been reported. C growth of nanorods and wurtzite (hexagonal) crystal structure is confirmed by XRD. The SEM images show oriented growth of nanorods with size of 200 nm to 500 nm. Effect of s temperature on growth of the ZnO nanorods has been discussed. Room temperature sensing of H has been studied. The ZnO nanorods show response and recovery times of 3
Key concepts: Nanorod, Wurtzite crystal structure, Hydrothermal circulation, Materials science, Hexagonal crystal system, Hydrothermal synthesis, Nanotechnology, Chemical engineering