Chakraborty Soma, Chattopadhyay Jayanta, Peng Haiqing, Chen Zheyi, Mukherjee Arnab, Arvidson Rolf S, Hauge Robert H, Billups W E
Department of Chemistry and The Richard E. Smalley Institute for Nanoscale Science and Technology, Rice University, Houston, Texas 77251, USA.
J Phys Chem B. 2006 Dec 14;110(49):24812-5. doi: 10.1021/jp065044u.
Single-walled carbon nanotubes have been functionalized and the specific surface areas of the functionalized nanotubes measured. Contrary to expectations, functionalization leads to a decrease in specific surface area compared to that of the unfunctionalized nanotubes. Treatment with a concentrated 1:1 nitric/sulfuric acid mixture followed by high-temperature baking at 1000 degrees C was found to increase the specific surface area of the nanotubes. For the unfunctionalized SWNTs, this treatment increases the specific surface area (SSA) by 20%. In the case of SWNTs functionalized by n-butyl groups the increase in the SSA was nearly 2-fold with the value increasing from 410 (drying at 110 degrees C) to 770 m2/gm (acid and bake treatment followed by drying at 110 degrees C). For the ozonized SWNTs, the SSA increases more than 3-fold from 381 (drying at 110 degrees C) to 1068 m2/gm (acid and bake treatment followed by drying at 110 degrees C). SEM images indicate that the nanotubes rebundle in the solid state with an average bundle size of 10-30 nm. AFM studies show that the ozonized tubes have been cut to short bundles after ozonolysis. Hydrogen uptake studies carried out on the baked ozonized tubes led to a 3 wt % hydrogen uptake at 77 K and 30 bar.
单壁碳纳米管已被功能化,并对功能化纳米管的比表面积进行了测量。与预期相反,与未功能化的纳米管相比,功能化导致比表面积减小。发现用浓1:1硝酸/硫酸混合物处理,然后在1000℃下高温烘烤,可增加纳米管的比表面积。对于未功能化的单壁碳纳米管,这种处理使比表面积(SSA)增加了20%。在正丁基功能化的单壁碳纳米管的情况下,比表面积增加了近2倍,数值从410(在110℃下干燥)增加到770平方米/克(酸处理和烘烤处理后在110℃下干燥)。对于经臭氧处理的单壁碳纳米管,比表面积从381(在110℃下干燥)增加到1068平方米/克(酸处理和烘烤处理后在110℃下干燥),增加了3倍多。扫描电子显微镜(SEM)图像表明,纳米管在固态下重新聚集,平均束尺寸为10 - 30纳米。原子力显微镜(AFM)研究表明,经臭氧处理的碳纳米管在臭氧分解后被切成了短束。对经烘烤的臭氧处理碳纳米管进行的氢吸附研究表明,在77K和30巴的条件下,氢吸附量为3重量%。