Lee Seung Woo, Kim Byeong-Su, Chen Shuo, Shao-Horn Yang, Hammond Paula T
Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Am Chem Soc. 2009 Jan 21;131(2):671-9. doi: 10.1021/ja807059k.
All multiwall carbon nanotube (MWNT) thin films are created by layer-by-layer (LBL) assembly of surface functionalized MWNTs. Negatively and positively charged MWNTs were prepared by surface functionalization, allowing the incorporation of MWNTs into highly tunable thin films via the LBL technique. The pH dependent surface charge on the MWNTs gives this system the unique characteristics of LBL assembly of weak polyelectrolytes, controlling thickness and morphology with assembly pH conditions. We demonstrate that these MWNT thin films have randomly oriented interpenetrating network structure with well developed nanopores using AFM and SEM, which is an ideal structure of functional materials for various applications. In particular, electrochemical measurements of these all-MWNT thin film electrodes show high electronic conductivity in comparison with polymer composites with single wall nanotubes, and high capacitive behavior with precise control of capacity.
所有多壁碳纳米管(MWNT)薄膜均通过表面功能化的MWNT的逐层(LBL)组装制备而成。通过表面功能化制备带负电和正电的MWNT,从而能够通过LBL技术将MWNT纳入高度可调的薄膜中。MWNT上与pH相关的表面电荷赋予该系统弱聚电解质LBL组装的独特特性,可通过组装pH条件控制厚度和形态。我们使用原子力显微镜(AFM)和扫描电子显微镜(SEM)证明,这些MWNT薄膜具有随机取向的互穿网络结构以及发育良好的纳米孔,这是适用于各种应用的功能材料的理想结构。特别是,这些全MWNT薄膜电极的电化学测量结果表明,与具有单壁纳米管的聚合物复合材料相比,其具有高电子导电性,并且在精确控制电容的情况下具有高电容行为。