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N L Abbott

Showing results (1-10 of 15) with videos related to

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Analytical Chemistry|October 30, 2001
Principles for microscale separations based on redox-active surfactants and electrochemical methodsC A Rosslee, N L Abbott
Science (New York, N.Y.)|August 18, 2001
Principles for measurement of chemical exposure based on recognition-driven anchoring transitions in liquid crystalsR R Shah, N L Abbott
Bioseparation|January 1, 1990
On protein partitioning in two-phase aqueous polymer systemsN L Abbott, D Blankschtein, T A Hatton
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|June 6, 2003
Dynamic interaction between suspended particles and defects in a nematic liquid crystalS Grollau, N L Abbott, J J de Pablo
The Journal of Chemical Physics|May 28, 2005
Quenched disorder in a liquid-crystal biosensor: adsorbed nanoparticles at confining wallsO Guzmán, N L Abbott, J J de Pablo
Analytical Chemistry|October 12, 2000
Orientations of liquid crystals on mechanically rubbed films of bovine serum albumin: a possible substrate for biomolecular assays based on liquid crystalsS R Kim, R R Shah, N L Abbott
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 15, 2003
Spherical particle immersed in a nematic liquid crystal: effects of confinement on the director field configurationsS Grollau, N L Abbott, J J de Pablo
Science (New York, N.Y.)|September 4, 1992
Manipulation of the wettability of surfaces on the 0.1- to 1 -micrometer scale through micromachining and molecular self-assemblyN L Abbott, J P Folkers, G M Whitesides
The Journal of Chemical Physics|January 11, 2005
Slow dynamics of thin nematic films in the presence of adsorbed nanoparticlesS Grollau, O Guzmán, N L Abbott, et al.
Science (New York, N.Y.)|April 16, 1998
Optical amplification of ligand-receptor binding using liquid crystalsV K Gupta, J J Skaife, T B Dubrovsky, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Analytical Chemistry|October 30, 2001
Principles for microscale separations based on redox-active surfactants and electrochemical methodsC A Rosslee, N L Abbott
Science (New York, N.Y.)|August 18, 2001
Principles for measurement of chemical exposure based on recognition-driven anchoring transitions in liquid crystalsR R Shah, N L Abbott
Bioseparation|January 1, 1990
On protein partitioning in two-phase aqueous polymer systemsN L Abbott, D Blankschtein, T A Hatton
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|June 6, 2003
Dynamic interaction between suspended particles and defects in a nematic liquid crystalS Grollau, N L Abbott, J J de Pablo
The Journal of Chemical Physics|May 28, 2005
Quenched disorder in a liquid-crystal biosensor: adsorbed nanoparticles at confining wallsO Guzmán, N L Abbott, J J de Pablo
Analytical Chemistry|October 12, 2000
Orientations of liquid crystals on mechanically rubbed films of bovine serum albumin: a possible substrate for biomolecular assays based on liquid crystalsS R Kim, R R Shah, N L Abbott
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 15, 2003
Spherical particle immersed in a nematic liquid crystal: effects of confinement on the director field configurationsS Grollau, N L Abbott, J J de Pablo
Science (New York, N.Y.)|September 4, 1992
Manipulation of the wettability of surfaces on the 0.1- to 1 -micrometer scale through micromachining and molecular self-assemblyN L Abbott, J P Folkers, G M Whitesides
The Journal of Chemical Physics|January 11, 2005
Slow dynamics of thin nematic films in the presence of adsorbed nanoparticlesS Grollau, O Guzmán, N L Abbott, et al.
Science (New York, N.Y.)|April 16, 1998
Optical amplification of ligand-receptor binding using liquid crystalsV K Gupta, J J Skaife, T B Dubrovsky, et al.
Pageof 2