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Preparation and characterization of core-shell polystyrene/polyaniline/Pd composites and their catalytic properties for the reduction of 4-nitrophenol

机译:核 - 壳聚苯乙烯/聚苯胺/ Pd复合材料的制备及表征及其催化性能,用于减少4-硝基苯酚

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Herein,polystyrene/polyaniline/Pd (PS/PANI/Pd) core-shell composite catalysts were prepared by a facile swelling-diffusion- interfacial polymerization method. PS microparticles were firstly prepared by dispersion polymerization and were swollen by aniline monomer without any surface modification. H2PdCl4 acid was used as palladium precursor. The PdCl42- was adsorbed on the surface of aniline-swollen PS microparticles because of the electrostatic attraction between PdCl42 and anilinium positive ions protonated by H-1, which was diffused from the aniline-swollen PS microparticles. Then HCl solution was added to control the diffusion rate of anilinium positive ions and ammonium persulfate (APS) was used to polymerize the anilinium ions to get PANI shell. Due to the redox activity between PANI and Pd ions, Pd nanoparticles can be in situ formed on the surfaces of PS. Therefore, the core-shell PS/PANI/Pd composite catalysts were obtained. The morphology and structure of the obtained composites was characterized by TEM, FT-IR and EDX. Results showed that the products presented excellent catalytic properties for the reduction of 4nitrophenol (4-NP) to 4-aminophenol (4-AP) in the presence of NaBH4 by virtue of the interaction between Pd nanoparticles and conducive PANI shell. The catalytic reaction obeyed the pseudo-first-order reaction equations and the reaction rate constants were also calculated in this article. (C) 2017 Wiley Periodicals, Inc.
机译:这里,聚苯乙烯/聚苯胺/钯(PS / PANI / Pd)的由一个浅显溶胀弥散界面聚合方法制备核 - 壳复合催化剂。 PS微粒首先通过分散聚合制备和通过苯胺单体中溶胀而没有任何表面改性。 H2PdCl4酸用作钯前体。所述PdCl42-吸附因为PdCl42和通过H-1质子化苯胺正离子之间的静电引力,这是从苯胺溶胀PS微粒扩散的苯胺溶胀PS微粒的表面上。然后加入HCl溶液,以控制被用来聚合苯胺离子得到PANI壳苯胺正离子和过硫酸铵(APS)的扩散速率。由于聚苯胺和Pd离子之间的氧化还原活性,钯纳米粒子可以是在形成PS的表面上原位。因此,获得核 - 壳PS / PANI /钯复合材料的催化剂。所得到的复合材料的形态和结构经TEM,FT-IR和EDX。结果表明,该产品呈现优异的催化性质4nitrophenol(4-NP)的借助于钯纳米粒子,也有利于PANI壳之间的相互作用的减少在加入NaBH 4的存在下4-氨基苯酚(4-AP)。催化反应服从伪一级反应方程并在本文中也计算出的反应速率常数。 (c)2017 Wiley期刊,Inc。

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