Crystalline Graphite from an Organometallic Solution-Phase Reaction
We report a chemical method by which graphitic carbon is prepared at reaction temperatures as low as 110 °C from readily available molecular reagents. This process requires no forcing conditions such as high pressures, intense light, or electrical discharge but is a simple, catalytic organometallic...
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Veröffentlicht in: | Journal of the American Chemical Society 2006-12, Vol.128 (49), p.15590-15591 |
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container_title | Journal of the American Chemical Society |
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creator | Walter, Erich C Beetz, Tobias Sfeir, Matthew Y Brus, Louis E Steigerwald, Michael L |
description | We report a chemical method by which graphitic carbon is prepared at reaction temperatures as low as 110 °C from readily available molecular reagents. This process requires no forcing conditions such as high pressures, intense light, or electrical discharge but is a simple, catalytic organometallic reaction. The carbon forms in a variety of morphologies including graphene sheets and nanotubes. The mild reaction conditions are similar to those routinely employed in homogeneous catalysis; therefore, they will allow the subtle manipulation of reaction variables to give desired morphologies selectively. |
doi_str_mv | 10.1021/ja0666203 |
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This process requires no forcing conditions such as high pressures, intense light, or electrical discharge but is a simple, catalytic organometallic reaction. The carbon forms in a variety of morphologies including graphene sheets and nanotubes. 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Am. Chem. Soc</addtitle><description>We report a chemical method by which graphitic carbon is prepared at reaction temperatures as low as 110 °C from readily available molecular reagents. This process requires no forcing conditions such as high pressures, intense light, or electrical discharge but is a simple, catalytic organometallic reaction. The carbon forms in a variety of morphologies including graphene sheets and nanotubes. 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title | Crystalline Graphite from an Organometallic Solution-Phase Reaction |
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