The massive production of nanostructures with controlled features and high surface area is a challenging and timely task in view of developing eective materials for sensing and catalysis. Herein, functional ZnO nanostructures, named microflowers (MFs) have been prepared by a facile and rapid chemical bath deposition. ZnO MFs show an intriguing sheets-composed spheroidal shape, with diameters in the range 0.2-2.5 m, whose formation is achieved by a complexing action by F in an aqueous solution of zinc nitrate hexahydrate and hexamethylenetetramine. The evolution of the physical and structural properties of the material, following post-deposition thermal annealing, has been investigated by scanning electron microscopy (SEM), energy dispersive X-ray analyses (EDX), photoluminescence (PL) and X-ray diraction (XRD) techniques. The eectiveness of ZnO MFs in UV detection has also been tested to account for the potentiality of these nanostructures.

ZnO Microflowers Grown by Chemical Bath Deposition: A Low-Cost Approach for Massive Production of Functional Nanostructures

Strano, Vincenzina;Mirabella, Salvatore
2019

Abstract

The massive production of nanostructures with controlled features and high surface area is a challenging and timely task in view of developing eective materials for sensing and catalysis. Herein, functional ZnO nanostructures, named microflowers (MFs) have been prepared by a facile and rapid chemical bath deposition. ZnO MFs show an intriguing sheets-composed spheroidal shape, with diameters in the range 0.2-2.5 m, whose formation is achieved by a complexing action by F in an aqueous solution of zinc nitrate hexahydrate and hexamethylenetetramine. The evolution of the physical and structural properties of the material, following post-deposition thermal annealing, has been investigated by scanning electron microscopy (SEM), energy dispersive X-ray analyses (EDX), photoluminescence (PL) and X-ray diraction (XRD) techniques. The eectiveness of ZnO MFs in UV detection has also been tested to account for the potentiality of these nanostructures.
2019
Istituto per la Microelettronica e Microsistemi - IMM
Chemical bath deposition
Massive production
Nanostructures
UV detection
ZnO
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/515937
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