Title of article :
Nanofluidic Networks Based on Surfactant Membrane Technology
Author/Authors :
Orwar، Owe نويسنده , , Karlsson، Anders نويسنده , , Karlsson، Mattias نويسنده , , Karlsson، Roger نويسنده , , Sott، Kristin نويسنده , , Lundqvist، Anders نويسنده , , Tokarz، Michal نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2003
Pages :
-2528
From page :
2529
To page :
0
Abstract :
We explore possibilities to construct nanoscale analytical devices based on lipid membrane technology. As a step toward this goal, we present nanotube-vesicle networks with fluidic control, where the nanotube segments reside at, or very close (<2 (mu)m) to optically transparent surfaces. These nanofluidic systems allow controlled transport as well as LIF detection of single nanoparticles. In the weak-adhesion regime, immobilized vesicles can be approximated as perfect spheres with nanotubes attached at half the height of the vesicle in the axial (z) dimension. In the strong-adhesion regime (relative contact area, Sr* ~0.3), nanotubes can be adsorbed to the surface with a distance to the interior of the nanotubes defined by the membrane thickness of ~5 nm. Strong surface adsorption restricts nanotube self-organization, enabling networks of nanotubes with arbitrary geometries. We demonstrate LIF detection of single nanoparticles (30-nm-diameter fluorescent beads) inside single nanotubes. Transport of nanoparticles was induced by a surface tension differential applied across nanotubes using a hydrodynamic injection protocol. Controlled transport in nanotubes together with LIF detection enables construction of nanoscale fluidic devices with potential to operate with single molecules. This opens up possibilities to construct analytical platforms with characteristic length scales and volume orders of magnitudes smaller than employed in traditional microfluidic devices.
Keywords :
Metal-matrix composites (MMCs) , Modelling , Friction/wear , Wear coefficient , Alloys
Journal title :
Analytical Chemistry
Serial Year :
2003
Journal title :
Analytical Chemistry
Record number :
51282
Link To Document :
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