International audienceThe objective of this research is to examine how ultrasonication time affects agglomeration, stability, thermal conductivity, and viscosity of CuO nanofluid. Using different reaction conditions, distinct shaped CuO nanoparticles are synthesised and dispersed in an EG: DW (70:30) ratio with 0.3 vol%. Microscopic and TEM images are used to analyze colloidal solutions with varying sizes and shapes of nanoparticles. After 30 days of preparation, the zeta potential is measured to ensure that the suspension is stable. The Bridgman equation is used to compute thermal conductivity using sound velocity values. Viscosity of colloidal suspension is measured by viscometer. All of the studies are performed at 30° ± 2 °C room temper...
© 2017 Trans Tech Publications, Switzerland.In the presented work, thermal conductivity of CuO and i...
International audienceWe report the viscosity measurement of water-based nanofluids containing CuO s...
The main focus of the present work is to prepare the CuO nanoparticles by economical Sol-Gel meth...
The main aim of this work is to investigate the influence of different parameters on the stability o...
Ultrasonication duration during the preparation of nanofluids has an important role on its various ...
In the present work, we investigate the effect of nanoparticle crystallite size and shape on the the...
Abstract: Nanofluids are colloidal suspensions obtained by dispersing nanoparticles in any base flui...
In the present article we report the synthesis of pure phase of CuO nanoparticles using Cu(NO:)z xH2...
The attractive force between the nanoparticles can cause them to aggregate. Therefore, nanoparticles...
We apply the chemical solution method to synthesize Cu2O nanofluids: suspensions of cuprous-oxide (C...
Two decades have been going on since nanofluid was introduced with the hope that it could enhance th...
Past studies showed that varying nanoparticles size could affect several properties of nanofluids. T...
In this study cupric oxide (CuO) nanoparticles were synthesised by precipitation method using ...
Department of Chemistry, University of Jammu, Jammu-180 006, Jammu & Kashmir, India E-mail : mlakha...
Nanofluids are promising fluids for heat-transfer applications. Low stability and high viscosity are...
© 2017 Trans Tech Publications, Switzerland.In the presented work, thermal conductivity of CuO and i...
International audienceWe report the viscosity measurement of water-based nanofluids containing CuO s...
The main focus of the present work is to prepare the CuO nanoparticles by economical Sol-Gel meth...
The main aim of this work is to investigate the influence of different parameters on the stability o...
Ultrasonication duration during the preparation of nanofluids has an important role on its various ...
In the present work, we investigate the effect of nanoparticle crystallite size and shape on the the...
Abstract: Nanofluids are colloidal suspensions obtained by dispersing nanoparticles in any base flui...
In the present article we report the synthesis of pure phase of CuO nanoparticles using Cu(NO:)z xH2...
The attractive force between the nanoparticles can cause them to aggregate. Therefore, nanoparticles...
We apply the chemical solution method to synthesize Cu2O nanofluids: suspensions of cuprous-oxide (C...
Two decades have been going on since nanofluid was introduced with the hope that it could enhance th...
Past studies showed that varying nanoparticles size could affect several properties of nanofluids. T...
In this study cupric oxide (CuO) nanoparticles were synthesised by precipitation method using ...
Department of Chemistry, University of Jammu, Jammu-180 006, Jammu & Kashmir, India E-mail : mlakha...
Nanofluids are promising fluids for heat-transfer applications. Low stability and high viscosity are...
© 2017 Trans Tech Publications, Switzerland.In the presented work, thermal conductivity of CuO and i...
International audienceWe report the viscosity measurement of water-based nanofluids containing CuO s...
The main focus of the present work is to prepare the CuO nanoparticles by economical Sol-Gel meth...