Dynamical analysis of electroosmotic transport of bionic gyrotactic microorganisms with graphene oxide blood nanofluid through thermal ciliated channel. [PDF]
Ajmal M +5 more
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Machine learning forecasting of electroosmotic MHD flow of a buoyancy-driven ternary nanofluid in converging and diverging channels. [PDF]
Manai L +5 more
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Coupling between ion transport and electronic properties in individual carbon nanotubes. [PDF]
Cui G, Xu Z, Zhang S, Siria A, Ma M.
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Quantum machine learning-based electrokinetic mining for the identification of nanoparticles and exosomes with minimal training data. [PDF]
Thakur A +19 more
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Prospects for the Use of MICP Technology in the Remediation of Saline-Alkaline Soil Heavy Metal Pollution. [PDF]
Guo H, Wang N, Ma Q, Wang J, Gao X.
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Impact of Ethanol on Electrostatic Behaviour of Fluorocarbon Pharmaceutical Propellants. [PDF]
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Effect of Loading Strategy on Methylene Blue Encapsulation in Ethosomes: A Comparative Study of Aqueous and Ethanol Phases. [PDF]
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Characterization of Electrokinetic Properties of Nanofluids
Journal of Nanoscience and Nanotechnology, 2008The effects of pH value, surfactant, and electrolyte concentration on zeta potential, particle agglomeration, and thermal conductivity of nanofluids are investigated. The zeta potential of TiO2 (15 nm) nanoparticles in deionized water of different pH values was measured and the iso-electric point was found to be between 4.9 and 5.2.
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Electrokinetics: The Properties of the Stagnant Layer Unraveled
Langmuir, 1998When an aqueous solution moves tangentially to a charged surface, as in electrophoresis and all other electrokinetic phenomena, a thin water layer remains immobilized: the stagnant layer. The plane separating the stagnant layer and the mobile part of the fluid is the slip plane.
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Electrokinetic properties of scheelite
Journal of Colloid and Interface Science, 1974The electrophoretic mobility of scheelite (CaWO4) from King Island, Australia, has been measured in a variety of inorganic electrolytes, mostly at constant ionic strength and controlled pH. Scheelite develops a negative surface charge in its saturated solution, but the zeta-potential may be reduced to zero by increasing the calcium concentration to ...
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