Spiral microfluidic nanoparticle separators
نویسندگان
چکیده
Nanoparticles have potential applications in many areas such as consumer products, health care, electronics, energy and other industries. As the use of nanoparticles in manufacturing increases, we anticipate a growing need to detect and measure particles of nanometer scale dimensions in fluids to control emissions of possible toxic nanoparticles. At present most particle separation techniques are based on membrane assisted filtering schemes. Unfortunately their efficiency is limited by the membrane pore size, making them inefficient for separating a wide range of sizes. In this paper, we propose a passive spiral microfluidic geometry for momentum-based particle separations. The proposed design is versatile and is capable of separating particulate mixtures over a wide dynamic range and we expect it will enable a variety of environmental, medical, or manufacturing applications that involve rapid separation of nanoparticles in realworld samples with a wide range of particle components.
منابع مشابه
Continuous particle separation in spiral microchannels using Dean flows and differential migration.
Microparticle separation and concentration based on size has become indispensable in many biomedical and environmental applications. In this paper we describe a passive microfluidic device with spiral microchannel geometry for complete separation of particles. The design takes advantage of the inertial lift and viscous drag forces acting on particles of various sizes to achieve differential mig...
متن کاملCell Separation by Non-Inertial Force Fields in Microfluidic Systems.
Cell and microparticle separation in microfluidic systems has recently gained significant attention in sample preparations for biological and chemical studies. Microfluidic separation is typically achieved by applying differential forces on the target particles to guide them into different paths. This paper reviews basic concepts and novel designs of such microfluidic separators with emphasis o...
متن کاملFluid modelling of microfluidic separator channels
In a microfluidic ultrasonic separator device, the microchannel geometry is inherently angular due to the anisotropic etch processes used. A CFD model is used to investigate eddy formation induced by this angular geometry. Results are applicable to various microfluidic devices and show that certain etch patterns significantly reduce eddy formation. © 2005 Elsevier B.V. All rights reserved.
متن کاملNanoparticle-coated separators for lithium-ion batteries with advanced electrochemical performance.
We report a simple, scalable approach to improve the interfacial characteristics and, thereby, the performance of commonly used polyolefin based battery separators. The nanoparticle-coated separators are synthesized by first plasma treating the membrane in oxygen to create surface anchoring groups followed by immersion into a dispersion of positively charged SiO(2) nanoparticles. The process le...
متن کاملC2lc21089d 1238..1241
Fig. 1 Schematic top view on the channel separator, showing a full separation cycle. A periodically inverting external force Fext drags two diffusive particles featuring different drift velocities in the y-direction, starting from the small saw teeth. Possible diffusion paths are schematically depicted. Channel width d, large sawtooth length L, and profile amplitudes h and h/2 are indicated. Th...
متن کامل