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普鲁士蓝/聚吡咯纳米复合材料紧密堆积单分子层的界面合成、组装与表征

Interface synthesis, assembly and characterization of close-packed monolayer of prussian blue/polypyrrole nanocomposites.

作者信息

Ren Qiaoqiao, He Jingjing, Wang Huihui, Xu Shanling, Wang Zhigang, Miao Yuqing

机构信息

Lab of Biomimetic Electrochemistry and Biosensors, Institute of Physical Chemistry, Zhejiang Normal University, Jinhua 321004, China.

出版信息

J Nanosci Nanotechnol. 2012 Mar;12(3):2049-53. doi: 10.1166/jnn.2012.5180.

Abstract

The self-assembly of nanomaterials into ordered two- or three-dimensional structures has been extensively explored over the past years due to the great application potential. This paper reports a simple one-step methodology for the synthesis and assembly of Prussian blue/polypyrrole (PBPPy) nanocomposites into close-packed monolayer at a toluene-water interface where the formation of PBPPy and evaporation of organic phase happen simultaneously. The formed films could be easily transferred onto the glass carbon surface by layer-by-layer technique. The obtained PBPPy nanocomposites and their assembled film were characterized by scanning electron microscopy, Fourier transform infrared spectroscopy, UV-vis spectroscopy and cyclic voltammetry. The PBPPy nanocomposite film on the electrode surface exhibits excellent electron transfer and high electrocatalysis toward the reduction of H2O2. Herein, PPy component in PBPPy nanocomposites plays a great role in this great electrochemical performance. On the one hand, the presence of PPy is helpful of the formation of close-packed monolayer of PBPPy nanocomposites, and the adhesion of the ordered monolayer or multilayer onto the electrode surface due to the molecular interaction of PPy or the surface group of electrode. On the other hand, the conductive PPy facilitates the electron transfer between PB and PB or PB and electrode. The suggested method can be extended to a wide range of nanomaterials assembly and devise development.

摘要

在过去几年中,由于具有巨大的应用潜力,纳米材料自组装成有序的二维或三维结构已得到广泛研究。本文报道了一种简单的一步法,用于在甲苯 - 水界面将普鲁士蓝/聚吡咯(PBPPy)纳米复合材料合成并组装成紧密堆积的单层,在此过程中PBPPy的形成与有机相的蒸发同时发生。形成的薄膜可以通过逐层技术轻松转移到玻碳表面。通过扫描电子显微镜、傅里叶变换红外光谱、紫外 - 可见光谱和循环伏安法对所得的PBPPy纳米复合材料及其组装薄膜进行了表征。电极表面的PBPPy纳米复合薄膜对H2O2的还原表现出优异的电子转移和高电催化性能。在此,PBPPy纳米复合材料中的聚吡咯组分在这种优异的电化学性能中发挥了重要作用。一方面,聚吡咯的存在有助于PBPPy纳米复合材料形成紧密堆积的单层,并且由于聚吡咯或电极表面基团的分子相互作用,有序的单层或多层能够附着在电极表面。另一方面,导电的聚吡咯促进了普鲁士蓝与普鲁士蓝之间或普鲁士蓝与电极之间的电子转移。所提出的方法可以扩展到广泛的纳米材料组装和器件开发。

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