Shao Dongkai, Yotprayoonsak Peerapong, Saunajoki Ville, Ahlskog Markus, Virtanen Jorma, Kangas Veijo, Volodin Alexander, Haesendonck Chris Van, Burdanova Maria, Mosley Connor D W, Lloyd-Hughes James
Nanoscience Center, Department of Physics, University of Jyväskylä, FI-40014, Finland.
Nanotechnology. 2018 Apr 6;29(14):145203. doi: 10.1088/1361-6528/aaabd1.
We have examined the conductive properties of carbon nanotube based thin films, which were prepared via dispersion in water by non-covalent functionalization of the nanotubes with xylan, a type of hemicellulose. Measurements of low temperature conductivity, Kelvin probe force microscopy, and high frequency (THz) conductivity elucidated the intra-tube and inter-tube charge transport processes in this material. The measurements show excellent conductive properties of the as prepared thin films, with bulk conductivity up to 2000 S cm. The transport results demonstrate that the hemicellulose does not seriously interfere with the inter-tube conductance.
我们研究了基于碳纳米管的薄膜的导电性能,这些薄膜是通过用半纤维素的一种——木聚糖对纳米管进行非共价功能化处理后在水中分散制备而成的。低温电导率测量、开尔文探针力显微镜以及高频(太赫兹)电导率测量揭示了该材料管内和管间的电荷传输过程。测量结果表明,所制备的薄膜具有优异的导电性能,体电导率高达2000 S/cm。传输结果表明,半纤维素不会严重干扰管间电导。