Subnanometer-Diameter Wires Isolated in a Polymer Matrix by Fast Polymerization

The preparation and analysis of inorganic-organic polymer nanocomposites consisting of inorganic nanowires and multiwire "cables" in a random-coil organic polymer host is reported. Dissolution of inorganic (LiMo$_3$Se$_3$)$_n$ wires in a strongly coordinating monomer, vinylene carbonate, a...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 1996-08, Vol.273 (5276), p.782-784
Hauptverfasser: Golden, Josh H., DiSalvo, Francis J., Jean M. J. Fréchet, Silcox, John, Thomas, Malcolm, Elman, Jim
Format: Artikel
Sprache:eng
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Zusammenfassung:The preparation and analysis of inorganic-organic polymer nanocomposites consisting of inorganic nanowires and multiwire "cables" in a random-coil organic polymer host is reported. Dissolution of inorganic (LiMo$_3$Se$_3$)$_n$ wires in a strongly coordinating monomer, vinylene carbonate, and the use of a rapid polymerization in the presence of a cross-linking agent produce nanocomposites without phase separation. Polymerization of dilute solutions yields a material containing mostly (Mo$_3$Se$_{3^-}$)$_n$ mono- and biwires, 6 to 20 angstroms in diameter and 50 to 100 nanometers long. Polymerization of more concentrated liquid crystalline solutions yields a nanocomposite containing oriented multiwire cables, 20 to 40 angstroms in diameter and up to 1500 nanometers long, that display optical anisotropy and electrical conductivity.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.273.5276.782