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Search Publications by: John T. Woodward IV (Fed)

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Displaying 51 - 61 of 61

Cell Membrane Hybrid Bilayers Containing the G-Protein-Coupled Receptor CCR5

August 1, 2002
Author(s)
N M. Rao, Vitalii I. Silin, K D. Ridge, John T. Woodward IV, Anne L. Plant
A hybrid bilayer membrane is a planar model membrane that is formed at an alkanethiol monolayer-coated gold surface by the spontaneous reorganization of phospholipid vesicles. Membrane vesicles from monkey kidney COS-cells also reorganize at an alkanethiol

Electrochemical Properties of Nanocrystalline Cadmium Stannate Films

August 1, 2001
Author(s)
Gintaras Valincius, Vytas Reipa, V L. Vilker, John T. Woodward IV, Mark D. Vaudin
Electrochemical properties of the sol-gel nanocrystalline cadmium tin oxide electrodes (CTO) were investigated in 0.2 M potassium chloride buffered at pH 7.4 with phosphate. Films were found to be n-type degenerate semiconductors with charge carrier levels

The Effect of an Oxidized Gold Substrate on Alkanethiol Self-Assembly

June 1, 2000
Author(s)
John T. Woodward IV, Marlon L. Walker, Curtis W. Meuse, David J. Vanderah, G Poirier, Anne L. Plant
UV cleaned gold substrates incubated in solutions of alkanethiol show islands on the monolayer surface when imaged with non-contact atomic force microscopy (AFM). The height of the islands above the monolayer is approximately twice the height of the

Atomic Force Microscopy of Hybrid Bilayer Membranes

February 1, 2000
Author(s)
John T. Woodward IV
Hybrid bilayer membranes (HBM) are synthetic membrane mimics designed to form a biomimetic surface. The basic HBM system consists of a lipid monolayer adsorbed to an alkanethiol self-assembled monolayer. More advanced versionshave used different thiolates