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Ultrasound assisted synthesis of PANI/ZnMoO4 nanocomposite for simultaneous improvement in anticorrosion, physico-chemical properties and its application in gas sensing

机译:超声辅助合成PANI / ZnMoO4纳米复合材料以同时改善防腐性能,理化性能及其在气体传感中的应用

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Ultrasound assisted in-situ semi-batch emulsion polymerization has been used for the preparation of polyaniline (PAN!) and PANI/ZnMoO4 nanocomposite with different loading of ZnMoO4 (ZM) nanopartides. ZM nanoparticles were functionalized using Myristic acid (MA) for better compatibility with PANI. The cavitational effects induced due to ultrasonic irradiations have been shown significant enhancement in the dispersion of functionalized ZM nanoparticles into the PANI during ultrasound assisted in-situ emulsion polymerization process. TEM images of PANI/ZM nanocomposite particles give the direct evidence of fine dispersion and encapsulation of MA treated ZM nanoparticles in PANI matrix. The presence of ZM nanoparticles in PANI/ZM nanocomposite shows significant improvement in the mechanical (cross-cut adhesion), thermal, anticorrosion and sensing properties of PANI/ZM nanocomposite/alkyd coatings over PANI/alkyd and neat alkyd resin coating. Fine and uniform dispersion of ZM nanoparticles in PANI matrix using this novel synthesis method (PANI (p-type)/ZM (n-type) hetero-junction) improves LPG sensing ability and minimizes response time to sense LPG significantly compared with neat PANI. (C) 2014 Elsevier B.V. All rights reserved.
机译:超声辅助原位半间歇乳液聚合已用于制备具有不同载量的ZnMoO4(ZM)纳米粒子的聚苯胺(PAN!)和PANI / ZnMoO4纳米复合材料。 ZM纳米粒子使用肉豆蔻酸(MA)进行了功能化,以更好地与PANI相容。在超声波辅助的原位乳液聚合过程中,由于超声波辐照引起的空化效应已显示出功能化ZM纳米粒子向PANI中的分散性显着增强。 PANI / ZM纳米复合颗粒的TEM图像直接证明了MA处理过的ZM纳米颗粒在PANI基质中的精细分散和包封。 PANI / ZM纳米复合材料中ZM纳米粒子的存在显示出PANI / ZM纳米复合材料/烷基涂料的机械(横切粘合力),热,耐腐蚀和感测性能明显优于PANI /烷基和纯醇酸树脂涂料。与纯PANI相比,使用这种新颖的合成方法(PANI(p型)/ ZM(n型)异质结)将ZM纳米颗粒精细且均匀地分散在PANI基质中,可显着提高LPG的传感能力,并使响应LPG的时间最小化。 (C)2014 Elsevier B.V.保留所有权利。

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