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首页> 外文期刊>Journal of Applied Polymer Science >Electroconductive and catalytic performance of polypyrrole/montmorillonite/silver composites synthesized through in situ oxidative polymerization
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Electroconductive and catalytic performance of polypyrrole/montmorillonite/silver composites synthesized through in situ oxidative polymerization

机译:通过原位氧化聚合合成聚吡咯/蒙脱土/银复合材料的导电性和催化性能

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摘要

The present study demonstrates a simple approach to the formation of polypyrrole/montmorillonite/silver (PPy/Mt/Ag) composites via in situ oxidative polymerization of pyrrole (Py) in the presence of AgNO3 acting as a direct oxidant. The polymerization was performed in the presence of dodecylbenzenesulfonic acid, which acts as a stabilizing and doping agent. The morphological, structural, and thermal properties of PPy/Mt/Ag composites are discussed in detail and a possible formation mechanism is proposed. The electrical conductivities of the composites pressed at different pressing pressures were investigated using four-probe analyzer. X-ray diffraction, transmission electron microscopy, and scanning electron microscopy results indicated the partially exfoliated structure of the composites and Fourier transforms infrared results suggested the strong interactions between SiAOASi groups in Mt and NAH groups in PPy chains. The addition of Mt in the PPy polymer enhanced thermal property of the polymer. The conductivity of 1.08 S cm(-1) was observed in the sample with 20 wt % Mt loading and applied pressure of 5 MPa. The composites obtained in the present study catalyze the reduction of methylene blue by sodium borohydride, achieving 92% conversion of MB to colorless within a few minutes. (C) 2017 Wiley Periodicals, Inc.
机译:本研究表明,在AgNO 3的存在作为直接氧化剂的AgNO 3存在下,通过原位氧化聚合形成吡咯(Py)的吡咯(Py)的形成简单方法。聚合在十二烷基苯磺酸存在下进行,其用作稳定和掺杂剂。详细讨论了PPY / MT / Ag复合材料的形态学,结构和热性能,提出了一种可能的地层机制。使用四探针分析仪研究在不同压制压力下按压的复合材料的电导率。 X射线衍射,透射电子显微镜和扫描电子显微镜结果表明了复合材料和傅里叶变换的部分剥离结构红外结果表明在PPY链中MT和NAH组中SIAOASI组之间的​​强相互作用。添加MT在聚合物的PPY聚合物增强的热性质中。在样品中观察到1.08scm(-1)的电导率,其中20wt%加载和5MPa的施加压力。本研究中获得的复合材料催化硼氢化钠通过硼氢化钠还原,在几分钟内实现了92%的MB转化为无色。 (c)2017 Wiley期刊,Inc。

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