Nanoparticleimage velocimetry (nano-PIV), based on total internal reflection fluorescent microscopy, is very useful to investigate fluid flows within ∼100 nm from a surface; but so far it has only been applied to flow over smooth surfaces. Here we show that it can also be applied to flow over a topologically structured surface, provided that the surface structures can be carefully configured not to disrupt the evanescent-wave illumination. We apply nano-PIV to quantify the flow velocity distribution over a polydimethylsiloxane surface, with a periodic gratinglike structure (with 215 nm height and 2 μm period) fabricated using our customized multilevel lithography method. The measured tracer displacement data are in good agreement with the c...
Nanofluids are suspensions of nanometer-sized particles in liquids. The nanoparticles self-structure...
With the emergence of nano-devices and nano-scale research, gaining further understanding of the evo...
Dense arrays of aligned carbon nanotubes are designed into strips, nanowicks, as a miniature wicking...
Nanoparticleimage velocimetry (nano-PIV), based on total internal reflection fluorescent microscopy,...
Quantifying the velocity field near the wall in microfluidic devices is important because surface ef...
International audienceThe manipulation of fluids in micro/nanofabricated systems opens new avenues t...
For the first time we have been able to measure the flow velocity profile for nanofluidics with a sp...
Significant research efforts are currently focused upon investigating the potential of nanoparticles...
We present a technique to measure the velocity and flow profiles of a nanofluid in a microfluidic ch...
Abstract Particle-image velocimetry (PIV) using evanescent-wave illumination has been recently used ...
In this letter, we describe a novel methodology for fabricating inexpensive environmentally-friendly...
Hydrodynamic alignment of proteinaceous or polymeric nanofibrillar building blocks can be utilized f...
International audienceThe goal of this paper is to review progress (mostly recent) made in micro and...
Nanofluidics is the study of fluid flow in or around nano scale systems. At this scale, conventional...
The subject of this research is the systematic study of the dependence of water slippage inside micr...
Nanofluids are suspensions of nanometer-sized particles in liquids. The nanoparticles self-structure...
With the emergence of nano-devices and nano-scale research, gaining further understanding of the evo...
Dense arrays of aligned carbon nanotubes are designed into strips, nanowicks, as a miniature wicking...
Nanoparticleimage velocimetry (nano-PIV), based on total internal reflection fluorescent microscopy,...
Quantifying the velocity field near the wall in microfluidic devices is important because surface ef...
International audienceThe manipulation of fluids in micro/nanofabricated systems opens new avenues t...
For the first time we have been able to measure the flow velocity profile for nanofluidics with a sp...
Significant research efforts are currently focused upon investigating the potential of nanoparticles...
We present a technique to measure the velocity and flow profiles of a nanofluid in a microfluidic ch...
Abstract Particle-image velocimetry (PIV) using evanescent-wave illumination has been recently used ...
In this letter, we describe a novel methodology for fabricating inexpensive environmentally-friendly...
Hydrodynamic alignment of proteinaceous or polymeric nanofibrillar building blocks can be utilized f...
International audienceThe goal of this paper is to review progress (mostly recent) made in micro and...
Nanofluidics is the study of fluid flow in or around nano scale systems. At this scale, conventional...
The subject of this research is the systematic study of the dependence of water slippage inside micr...
Nanofluids are suspensions of nanometer-sized particles in liquids. The nanoparticles self-structure...
With the emergence of nano-devices and nano-scale research, gaining further understanding of the evo...
Dense arrays of aligned carbon nanotubes are designed into strips, nanowicks, as a miniature wicking...