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多孔壁碳纳米笼钠离子电池任务书(2)

时间:2021-08-26 21:40来源:毕业论文
[10] Du A. B., Liu X. G., Xu B. S. Synthesis and structure characterization of coal-based nano-structured onion-like fullerenes. J. Inorg. Mater., 2005, 20, 779-784 [11] Chlopek J., Czajkowska B., Sza

[10] Du A. B., Liu X. G., Xu B. S. Synthesis and structure characterization of coal-based nano-structured onion-like fullerenes. J. Inorg. Mater., 2005, 20, 779-784

[11] Chlopek J., Czajkowska B., Szaraniec B., In vitro studies of carbon nanotube biocompatibility. Carbon, 2006, 44, 1106-1111.

[12] Smart S. K., Cassaday A. I., Lu G. Q., The biocompatibility of carbon nanotubes. Carbon, 2006, 44, 1034-1047.

[13] Abatemarco T., Stickel J., Belfort J., Fractionation of Multiwalled Carbon Nanotubes by Cascade Membrane Microfiltration. J. Phys. Chem. B, 1999, 103, 3534-3538.

[14] Lu A. H., Li W. -C., Salabas E. -L., Low temperature catalytic pyrolysis for the synthesis of high surface area, nanostructured graphitic carbon. Chem. Mater., 2006, 18, 2086-2094.

[15] Sheng Z. M. Wang J. N., Thin-walled carbon nanocages: Direct growth, characterization, and applications. Adv. Mater., 2008, 20, 1071-1075.

[16] Maruyama J., Abe I., Application of conventional activated carbon loaded with dispersed Pt to PEFC catalyst layer. Electrochim. Acta, 2003, 48, 1443-1450.

[17] 毛宗强等,燃料电池。北京,化学工业出版社,2005。

六、进度安排:(设计或论文各阶段的要求,时间安排):

尝试合成超高比表面积、多孔壁结构或者含特定官能团的石墨纳米笼。在x射线衍射和高分辨电镜的测试结果,均证明高度石墨化的条件下,使纳米石墨样品的比表面积达到1000 m2/g以上,在0.1A/g电流密度下,放电比容量达到150mAh/g。

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多孔壁碳纳米笼钠离子电池任务书(2):http://www.youerw.com/renwushu/lunwen_80998.html
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