Peng Zhangquan, Guo Limin, Zhang Zhonghua, Tesche Bernd, Wilke Thorsten, Ogermann Daniel, Hu Shuhua, Kleinermanns Karl
Institute for Physical Chemistry, Heinrich-Heine University Düsseldorf, 40225 Düsseldorf, Germany.
Langmuir. 2006 Dec 19;22(26):10915-8. doi: 10.1021/la062135+.
A micelle-based method to synthesize dispersed polyaniline (PANI)-Au composite particles by direct oxidation of aniline using AuCl4- as the oxidant is presented. The obtained composite particles have a core-shell structure, where Au nanoparticles of 20 nm mean diameter are encapsulated by PANI of well-defined tetrahedron shape with 150 nm average edge length. The polaron band of the dispersed PANI-Au composite particles is centered at 745 nm and is rather narrow compared to the broad 835 nm absorption of PANI synthesized by the IUPAC procedure. The surface plasmon absorption of Au nanoparticles normally centered at around 520 nm is absent in the composite particles with oxidized PANI. Our results point to a strong electronic interaction between the encapsulated Au nanoparticles and the shell of oxidized PANI. Films and pellets produced from these composite particles show a twofold higher conductivity than IUPAC PANI.
提出了一种基于胶束的方法,通过使用AuCl4-作为氧化剂直接氧化苯胺来合成分散的聚苯胺(PANI)-金复合颗粒。所获得的复合颗粒具有核壳结构,其中平均直径为20nm的金纳米颗粒被平均边长为150nm的明确四面体形状的聚苯胺包裹。分散的PANI-金复合颗粒的极化子带中心位于745nm,与通过国际纯粹与应用化学联合会(IUPAC)程序合成的聚苯胺的835nm宽吸收相比相当窄。在具有氧化聚苯胺的复合颗粒中不存在通常中心位于约520nm的金纳米颗粒的表面等离子体吸收。我们的结果表明包裹的金纳米颗粒与氧化聚苯胺壳之间存在强烈的电子相互作用。由这些复合颗粒制成的薄膜和粒料的电导率比IUPAC聚苯胺高两倍。