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- W1982195737 abstract "Abstract After the recent synthesis of fullerene carbon clusters, we have succeeded in synthesizing an approximately 15 A pyramid-shaped CdS cluster (quantum dot). Here we focus on the photoconductive properties of fullerene and CdS cluster doped polymers. Fullerenes (C 60 and C 70 ) are very effective dopants for enhancing the photoconductivity of a variety of polymers such as polyvinylcarbazole. Photogeneration and transport measurements show that these fullerene-doped polymeric photoconductors are as good as many commercial photoconductors. The mechanism of photoconductivity and the unique role of fullerene will be discussed. The largest single-sized semiconductor cluster has been synthesized and crystallographically characterized recently. This cluster has an 82 atom tetrahedral core of cubic phase CdS with the overall shape of a pyramid. Its preparation and structure will be discussed. Polymers doped with this CdS cluster, and other semiconductor nanoclusters, show excellent photoconductivity and represent a new class of optoelectronic materials." @default.
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- W1982195737 date "1993-04-01" @default.
- W1982195737 modified "2023-09-27" @default.
- W1982195737 title "Bucky ball and quantum dot doped polymers: A new class of optoelectronic materials" @default.
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- W1982195737 doi "https://doi.org/10.1016/0921-5107(93)90166-k" @default.
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