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Thermal properties of nanofluids

Advances in Colloid and Interface Science, 2012
Colloidal suspensions of fine nanomaterials in the size range of 1-100 nm in carrier fluids are known as nanofluids. For the last one decade, nanofluids have been a topic of intense research due to their enhanced thermal properties and possible heat transfer applications.
John Philip, P. D. Shima
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Nanofluids for electronics cooling

2014 IEEE 20th International Symposium for Design and Technology in Electronic Packaging (SIITME), 2014
The goal of this study is to investigate experimentally the thermal performance of an electronics cooling system which is available in the market. Selected system is a water block used for liquid cooling of a central processing unit (CPU) of a computer. A suitable heater (resistance wire) is fabricated for producing heat similar to CPU.
TURGUT, ALPASLAN, Elbasan, Emre
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Nanofluids of the Future

2009
Nanofluids are a new class of fluids engineered by dispersing nanometer-size structures (particles, fibers, tubes, droplets) in base fluids. The very essence of nanofluids research and development is to enhance fluid macroscale and megascale properties such as thermal conductivity through manipulating microscale physics (structures, properties and ...
Quintard, M, Wang, L
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Stability of Nanofluids

2021
The nanofluids are the promising smart fluids having advanced thermophysical properties. The earlier chapters have talked about various fascinating facts about the nanofluids. One of the important aspects of the nanofluids is the stability of the nanoparticles.
Sudhakar Subudhi, Aditya Kumar
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Spreading of nanofluids on solids

Nature, 2003
Suspensions of nanometre-sized particles (nanofluids) are used in a variety of technological contexts. For example, their spreading and adhesion behaviour on solid surfaces can yield materials with desirable structural and optical properties. Similarly, the spreading behaviour of nanofluids containing surfactant micelles has implications for soil ...
Alex D. Nikolov, Darsh T. Wasan
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Nanofluidics

2011
Recent developments in modeling and experimental studies on nanofluidics are reviewed. Nanofluidic studies are categorized into two groups depending on the characteristic length scale. In the first group, the size of the nanochannels and pores is 5–100 nm.
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An on-demand nanofluidic concentrator

Lab on a Chip, 2015
We developed an on-demand nanofluidic concentrator that can adaptively encapsulate highly concentrated samples and enhance long-term stability for further analysis.
Shuhuai Yao   +4 more
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Stability of Nanofluids

Materials Science Forum, 2013
It has long been established that a suspension of nanosized solid particles in liquids provide useful advantages in industrial heat transfer fluid systems. Numerous investigations on nanofluids show a significant enhancement in thermal conductivity over the base fluid in which these nanoparticles are dispersed.
Ravinder Kumar Wanchoo   +2 more
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Nanofluidics in chemical analysis

Chem. Soc. Rev., 2010
Nanofluidic architectures and devices have already had a major impact on forefront problems in chemical analysis, especially those involving mass-limited samples. This critical review begins with a discussion of the fundamental flow physics that distinguishes nanoscale structures from their larger microscale analogs, especially the concentration ...
Jonathan V. Sweedler   +3 more
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Ionic dispersion in nanofluidics

ELECTROPHORESIS, 2006
AbstractAn analytical solution for dispersion of ionic and neutral solutes in nanoscale channels is presented. Results suggest that in the presence of relatively thick electrical double layers (EDLs) characteristic of nanofluidics, the dispersion of ionic solutes differs from that of neutral solutes on which previous theory is based.
Angela De Leebeeck, David Sinton
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