A Facile One Step Solution Route to Synthesize Cuprous Oxide Nanofluid

A cuprous oxide nanofluid stabilized by sodium lauryl sulfate, synthesized by using the one step method, has been reported. Nanofluids were synthesized by using a well‐ controlled surfactant‐assisted solution phase synthesis. The method involved reduction of copper acetate by glucose in a mixture of...

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Main Authors: Shenoy U. Sandhya, Shetty A. Nityananda
Format: Article
Language:English
Published: SAGE Publishing 2013-05-01
Series:Nanomaterials and Nanotechnology
Subjects:
Online Access:http://www.intechopen.com/journals/nanomaterials_and_nanotechnology/a-facile-one-step-solution-route-to-synthesize-cuprous-oxide-nanofluid
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spelling doaj-94a6428bfb0a4e90b5d24cb402a216b02020-11-25T03:06:33ZengSAGE PublishingNanomaterials and Nanotechnology1847-98042013-05-013 5 http://dx.doi.org/10.5772/5662644584A Facile One Step Solution Route to Synthesize Cuprous Oxide NanofluidShenoy U. SandhyaShetty A. NityanandaA cuprous oxide nanofluid stabilized by sodium lauryl sulfate, synthesized by using the one step method, has been reported. Nanofluids were synthesized by using a well‐ controlled surfactant‐assisted solution phase synthesis. The method involved reduction of copper acetate by glucose in a mixture of water and ethylene glycol serving as the base fluid. The synthesized fluid was characterized by X‐ray and electron diffraction techniques, in addition, transmission and field emission microscopic techniques and Fourier transform infra red spectroscopic analysis was undertaken. The rheological property, as well as the thermal conductivity of the fluid, were measured. The variation of reaction parameters considerably affected the size of the particles as well as the reaction rate. The uniform dispersion of the particles in the base fluid led to a stability period of three months under stationary state, augmenting the thermal conductivity of the nanofluid. The method is found to be simple, reliable and fast for the synthesis of Newtonian nanofluids containing cuprous oxide nanoparticles.http://www.intechopen.com/journals/nanomaterials_and_nanotechnology/a-facile-one-step-solution-route-to-synthesize-cuprous-oxide-nanofluidCuprous OxideNanofluidsNanoparticlesThermal ConductivityViscosity
collection DOAJ
language English
format Article
sources DOAJ
author Shenoy U. Sandhya
Shetty A. Nityananda
spellingShingle Shenoy U. Sandhya
Shetty A. Nityananda
A Facile One Step Solution Route to Synthesize Cuprous Oxide Nanofluid
Nanomaterials and Nanotechnology
Cuprous Oxide
Nanofluids
Nanoparticles
Thermal Conductivity
Viscosity
author_facet Shenoy U. Sandhya
Shetty A. Nityananda
author_sort Shenoy U. Sandhya
title A Facile One Step Solution Route to Synthesize Cuprous Oxide Nanofluid
title_short A Facile One Step Solution Route to Synthesize Cuprous Oxide Nanofluid
title_full A Facile One Step Solution Route to Synthesize Cuprous Oxide Nanofluid
title_fullStr A Facile One Step Solution Route to Synthesize Cuprous Oxide Nanofluid
title_full_unstemmed A Facile One Step Solution Route to Synthesize Cuprous Oxide Nanofluid
title_sort facile one step solution route to synthesize cuprous oxide nanofluid
publisher SAGE Publishing
series Nanomaterials and Nanotechnology
issn 1847-9804
publishDate 2013-05-01
description A cuprous oxide nanofluid stabilized by sodium lauryl sulfate, synthesized by using the one step method, has been reported. Nanofluids were synthesized by using a well‐ controlled surfactant‐assisted solution phase synthesis. The method involved reduction of copper acetate by glucose in a mixture of water and ethylene glycol serving as the base fluid. The synthesized fluid was characterized by X‐ray and electron diffraction techniques, in addition, transmission and field emission microscopic techniques and Fourier transform infra red spectroscopic analysis was undertaken. The rheological property, as well as the thermal conductivity of the fluid, were measured. The variation of reaction parameters considerably affected the size of the particles as well as the reaction rate. The uniform dispersion of the particles in the base fluid led to a stability period of three months under stationary state, augmenting the thermal conductivity of the nanofluid. The method is found to be simple, reliable and fast for the synthesis of Newtonian nanofluids containing cuprous oxide nanoparticles.
topic Cuprous Oxide
Nanofluids
Nanoparticles
Thermal Conductivity
Viscosity
url http://www.intechopen.com/journals/nanomaterials_and_nanotechnology/a-facile-one-step-solution-route-to-synthesize-cuprous-oxide-nanofluid
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