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Growth of multi-walled carbon nanotubes by catalytic decomposition of acetylene on Ni-supported carbon fibers prepared by the heat-treatment of cellulose fibers

机译:乙炔在纤维素纤维热处理制备的镍基碳纤维上催化分解乙炔来生长多壁碳纳米管

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摘要

Cellular-type carbon fibers, prepared by heat-treatment of cellulose fibers that ranged from 500 to 2300 °C, were used as catalytic support for the growth of carbon nano-filaments. A comparison of the Raman spectra of products prepared at different heat-treatment temperatures showed significant variation in the carbon structure of the surfaces of the as-prepared carbon fibers. TEM observation clearly revealed that the products heat-treated below 1000 °C had an amorphous phase, and at 1500 °C they were similar to glassy carbon—an example of non-graphitizing carbon. Surface graphitization of the carbon fibers derived by pre-treatment at 1500 °C was accomplished at above 2000 °C. Multi-walled carbon nanotubes (MWCNTs), approximately 15 nm and 8 μm in diameter and length, were synthesized on the surface of the prepared carbon fibers via a tip growth mechanism. TEM images and Raman spectra confirmed that the higher synthesis temperature could lead to the formation of MWCNTs with better crystalline carbon shells.
机译:通过热处理范围为500到2300°C的纤维素纤维制备的蜂窝型碳纤维被用作碳纳米丝生长的催化载体。在不同热处理温度下制备的产品的拉曼光谱的比较表明,所制备的碳纤维表面的碳结构有显着变化。 TEM观察清楚地表明,在1000°C以下进行热处理的产品具有非晶相,在1500°C时它们类似于玻璃碳(非石墨化碳的一个例子)。通过在1500°C下进行预处理获得的碳纤维的表面石墨化在2000°C以上完成。通过尖端生长机理,在制备的碳纤维表面上合成了直径和长度约为15 nm和8μm的多壁碳纳米管(MWCNT)。 TEM图像和拉曼光谱证实,较高的合成温度可以导致具有更好的结晶碳壳的MWCNT的形成。

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