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Carbon-coated polymer thin film

Thin films of the polymer were cast from acetone onto carbon-coated slides. The films were placed in contact with isotonic saline for 4 h, and then washed in deionized distilled water. A carbon film was subjected to the above saline/wash treatment to serve as the experimental control. [Pg.181]

The aforementioned recrystallization behavior of polymer thin films with controlled crystal structure and orientation may be of great significance. Through this process, micropatterned polymer thin films with well-defined crystal stmcture and orientation can be simply prepared by selective carbon coating with the help of a mask and subsequent melt recrystallization of the preoriented polymer films [78]. The patterned polymer thin films exhibit exceptional anisotropic optical properties and may potentially find applications in the fields of nanometer- and/or micrometer-sized stractures for optoelectronics and optical applications [80,81]. [Pg.208]

Titanium carbide may also be made by the reaction at high temperature of titanium with carbon titanium tetrachloride with organic compounds such as methane, chloroform, or poly(vinyl chloride) titanium disulfide [12039-13-3] with carbon organotitanates with carbon precursor polymers (31) and titanium tetrachloride with hydrogen and carbon monoxide. Much of this work is directed toward the production of ultrafine (<1 jim) powders. The reaction of titanium tetrachloride with a hydrocarbon-hydrogen mixture at ca 1000°C is used for the chemical vapor deposition (CVD) of thin carbide films used in wear-resistant coatings. [Pg.118]

Hur, S. H. et al. 2005. Printed thin-film transistors and complementary logic gates that use polymer-coated single-walled carbon nanotube networks. J. Appl. Phys. 98 114302. [Pg.445]

The surface of a carbon electrode was at first coated with a thin film of an anionic polymer such as sodium poly(styrene-sulfonate) 95) or nafion 96) (thickness thousand A) then the cationic Ru(bpy)2+ was adsorbed in the anionic layer electrostatically. The modification was also made by coating water insoluble polymer pendant Ru(bpy)2 + ( ) from its DMF solution 97). These Ru(bpy) +/polymer modified electrode gave a photoresponse in the MV2+ solution with the Pt counter electrode 95-97) The time-current behaviours induced by irradiation and cutoff of the light under argon are shown in Fig. 28. It is interesting to see that the direction of the photocurrent reversed at the electrode potential of ca. 0.4 V (vs. Ag—AgCl) under... [Pg.38]

In the past, mica has been the material of choice for the interacting surfaces because of the ease of handling and since molecularly smooth surfaces can be fabricated mica surface coated with a thin film of other materials (e.g., lipid monolayers or bilayers, metal films, polymer films, or other macromolecules such as proteins) can also be used. The use of alternative materials such as molecularly smooth sapphire and silica sheets and carbon and metal oxide surfaces is also being explored. [Pg.53]

The basic research in the future should be oriented towards novel materials for use in carbon dioxide as a solvent. These materials may have important applications in the synthesis of polymers, pharmaceuticals and other commodity chemicals, in the formation of thin films and foams, in coatings and extracts, and in the manufacture of microelectronic circuits. The full deployment of these applications would result in significant reductions in both volatile emissions and aqueous- and organic liquid wastes in manufacturing operations. [Pg.486]

When polymers are used as precursors, they are generally applied as a thin film to a porous matrix. After carbonization, the polymer film changes into a carbon coating. The use of matrices with definite structure opens new possibilities for obtaining nanostructured carbon surface layers on an inorganic matrix. [Pg.522]

To examine craze microstructure, and to study the effect of molecular variables on craze morphology, the method described by Kramer was followed. Samples of polymers were cast in the form of thin films, strained in tension while bonded to carbon-coated grids, and examined in the transmission electron microscope either before or after staining. The TEM observations were made with an Hitachi HU-11 A unit or with a JEOL JEM-IOOCX unit, operating usually at 75-80 kV. Fracture surfaces of many bulk samples were coated with a thin layer of gold-palladium and examined by an Etec scanning electron microscope. [Pg.73]

The immobilisation of antibacterial coatings onto conductive materials such as stainless steel or carbon fibre used in orthopaedic implants was investigated by two methods. The formation of thin films by electrodeposition of polypyrrole doped with polyanions able to complex silver ions, and their characterisation by SEM, FTIR and microbiological testing is described. The alternative method, involving chemical grafting of a thin film of a quatemaiy ammonium polymer using a surface initiator, is also discussed. 2 refs. [Pg.35]

Morphological studies were done on thin films of the polymer as cast onto carbon-coated glass slides. [Pg.181]


See other pages where Carbon-coated polymer thin film is mentioned: [Pg.385]    [Pg.272]    [Pg.1744]    [Pg.662]    [Pg.241]    [Pg.146]    [Pg.434]    [Pg.10]    [Pg.128]    [Pg.211]    [Pg.208]    [Pg.16]    [Pg.342]    [Pg.549]    [Pg.552]    [Pg.78]    [Pg.155]    [Pg.495]    [Pg.25]    [Pg.295]    [Pg.72]    [Pg.132]    [Pg.242]    [Pg.294]    [Pg.144]    [Pg.477]    [Pg.7]    [Pg.25]    [Pg.85]    [Pg.407]    [Pg.216]    [Pg.556]    [Pg.62]    [Pg.17]    [Pg.604]    [Pg.291]    [Pg.331]   
See also in sourсe #XX -- [ Pg.207 , Pg.208 ]




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Carbon coated

Carbon polymer

Film coating

Polymer coatings

Polymer film coatings

Polymer thin films

Thin coatings

Thin polymer

Thin-coat

Thin-film coatings

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