Arisawa et al., “Quantitative characterization of enzymes adsorbed on to Langmuir-Blodgett films and the application to a urea sensor,” Thin Solid Films 210:443-445 (1992). |
Beswick et al., “Optical Detection of Toxic Gases Using Fluorescent Porphyrin Langmuir-Blodgett Films,” J. Colloid Interface Sci. 124:146-155 (1988). |
Chance et al., “Thermal effects on the optical properties of single crystals and solution-cast films of urethane substituted polydiacetylenes,” J. Chem. Phys. 71:206-211 (1979). |
Cuatrecasas, “Interaction of Vibrio cholerae Enterotoxin with Cell Membranes,” Biochemistry 12: 3547-3558 (1973). |
Frankel et al., “Supramolecular Assemblies of Diacetylenic Aldonamides,” J. Am. Chem. Soc. 116: 10057-10069 (1994). |
Furuki et al., “Hybrid gas detector of squarylium dye Langmuir-Blodgett film deposited on a quartz oscillator,”0 Thin Solid Films 210:471 (1992). |
Kaneko et al., “Absorption properties and structure changes caused by pre-annealing in polydiacetylene Langmuir-Blodgett films,” Thin Solid Films 210:548-550 (1992). |
Kingery-Wood et al., “The Agglutination of Erythrocytes by Influenza Virus is Strongly Inhibited by Liposomes Incorporating an Analog of Sialyl Gangliosides,” J. Am. Chem. Soc. 114:7303-7305 (1992). |
Kuo et al., “Synthesis and Properties of Diacetylenic Glutamate Lipid Monomer and Polymer: Thermochromic Polydiacetylene Free-Standing Films,” Macromolecules 23:3225-3230 (1990). |
Mino et al., “Photoreactivity of 10,12-Pentacosadiynoic Acid Monolayers and Color Transitions of the Polymerized Monolayers on an Aqueous Subphase,” Langmuir 8:594-598 (1992). |
Miyasaka et al., “Amperometric Glucose Sensor with Glucose Oxidase Immobilized on SnO2 Electrode via a Monolayer of a Photoreactive Nitrophenylazide Derivative,”0 Chem. Lett., pp. 627-630 (1990). |
Novotny et al., “Tribology of Langmuir-Blodgett Layers,” Langmuir 5:485-489 (1989). |
Okahata et al., “Preparation of Langmuir-Blodgett Films of Enzyme-Lipid Complexes: A Glucose Sensor Membrane,” Thin Solid Films 180:65-72 (1989). |
Ott et al., “Liposomes and influenza viruses as an in vitro model for membrane interactions II. Influence of vesicle size and preparation methods,” Eur. J. Pharm. Sci. 6:333-341 (1994). |
Reichert et al., “Polydiacetylene Liposomes Functionalized with Sialic Acid and Colorimetrically Detect Influenza Virus,” J. Am. Chem. Soc. 117:829-830 (1995). |
Rhodes et al., “Structure of Polymerizable Lipid Bilayers. 6. Bilayer Structure of Three Polymerizable Diacetylenic Glutamate Lipids,” Langmuir 10:267-275 (1994). |
Shibata, “Reversible Colour Phase Transitions and Annealing Properties of Langmuir-Blodgett Polydiacetylene Films,” Thin Solid Films 179:433-437 (1989). |
Spevak et al., “Polymerized Liposomes Containing C-Glycosides of Sialic Acid: Potent Inhibitors of Influenza Virus in Vitro Infectivity,” J. Am. Chem. Soc. 115: 1146-1147 [1993]. |
Swalen et al., “Molecular Monolayers and Films,” Langmuir 3:932-950 (1987). |
Tieke, “Langmuir-Blodgett Membranes for Separation and Sensing,” Adv. Mat. 3:532-541 (1991). |
Whitesides et al., “Wet Chemical Approaches to the Characterization of Organic Surfaces: Self-Assembled Monolayers, Wetting, and the Physical-Organic Chemistry of the Solid-Liquid Interface,” Langmuir 6:87-96 (1990). |
Charych et al., “Specific Interaction of Influenza Virus with Organized Assemblies of Polydiacetylenes,” Mat. Res. Soc. Symp. Proc. 282:153-161 (1993). |
Charych et al., “Direct Colorimetric Detection of a Receptor-Ligand Interaction by a Polymerized Bilayer Assembly,” Science 261:585-588 (1993). |
Spevak, “The Presentation of Biological Ligands on the Surface of Polymerized Monolayers and Liposomes,” Ph.D. Dissertation, University of California at Berkeley (1993). |
Lio et al., “Atomic force microscope study of chromatic transitions in polydiacetylene thin films,” J. Vac. Sci. Technol. 14(2):1481-1486 (1996). |
Leung et al., “Imaging of polydiacetylene on graphite by scanning tunneling microscopy,” J. Appl. Phys. 69(4):2044-2047 (1991). |
Rieke et al., “Spatially Resolved Mineral Deposition on Patterned Self-Assembled Monolayers,” Langmuir 10:619-622 (1994). |
Dagani, “Lipids and Minerals Form Novel Composite Microstructures,” Chem. & Eng. News, 19-20 (1993). |
Kessel and Granick, “Formation and Characterization of a Highly Ordered and Well-Anchored Alkylsilane Monolayer on Mica by Self-Assembly,” Langmuir 7: 532-538 (1991). |
Miyasaka et al., “Oriented Polypeptide Monolayers by Rapid Spontaneous Condensation of Amphiphilic Amino Acid Esters,” The Solid Films 210/211:393-396 (1992). |
Perez et al., “Toward Inorganic Monolayers Inserted in a Langmuir-Blodgett Matrix,” Thin Solid Films 210/211:410-411 (1992). |
Tanev and Pinnavaia, “Biomimetic Templating of Porous Lamellar Silicas by Vesicular Surfactant Assemblies,” Science 271:1267-1269 (1996). |
Charych et al., “A ‘litmus test’ for molecular recognition using artificial membranes,” Chem. And Biol. 3:113-120 (1996). |
Pons et al., Biochimica et Biophysica Acta., vol.693., pp. 461-465., 1982. |