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首页> 外文期刊>Journal of Colloid and Interface Science >Preparation and characterization of polyaniline/manganese dioxide composites and their catalytic activity
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Preparation and characterization of polyaniline/manganese dioxide composites and their catalytic activity

机译:聚苯胺/二氧化锰复合材料的制备,表征及其催化活性

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This paper is devoted to the preparation of polyaniline/MnO2 (PANI/MnO2) composites via chemical oxidation of aniline in H2SO4 medium using beta-MnO2 as an oxidant. The parameters affecting the polymerization reaction are considered. These parameters are [aniline], amount of beta-MnO2, stirring time, and polymerization temperature. SEM, FT-IR, XRD, and TGA techniques are used to characterize the resulting composites. XRD measurements reveal the distortion of the crystal structure of beta-MnO2 after the polymerization reaction. Thus, the XRD pattern of PANI is predominating. The crystalline composites are obtained using higher molar ratio of [Ox]/[ANI] and at higher temperature. Increasing the amount of beta-MnO2 led to an increase in the acidic character of the obtained composites due to adsorption of excess H+ on the oxide surface. The thermal stability of the composites decreased with increasing both [aniline] and stirring time, while it increased with increasing amount of beta-MnO2. The applications of the composites in the oxidative degradation of Direct Red 81, Acid Blue 92, and Indigo Carmine dyes exhibited good catalytic activity in the presence of H2O2 as an oxidant. The reactions followed first-order kinetics and the rate constants were determined. The degradation reaction involved the catalytic action of the PANI counterpart of the composite toward H2O2 decomposition, which can lead to the generation of HO center dot radicals as a highly efficient oxidant attacking the target dyes. The detailed kinetic studies and the mechanism of these catalytic reactions are under consideration in our group. Published by Elsevier Inc.
机译:本文致力于以β-MnO2为氧化剂,在H2SO4介质中通过苯胺的化学氧化,制备聚苯胺/ MnO2(PANI / MnO2)复合材料。考虑影响聚合反应的参数。这些参数是[苯胺],β-MnO2的量,搅拌时间和聚合温度。 SEM,FT-IR,XRD和TGA技术用于表征所得的复合材料。 XRD测量表明聚合反应后β-MnO2的晶体结构变形。因此,PANI的XRD模式占主导地位。使用较高的[Ox] / [ANI]摩尔比并在较高的温度下获得结晶复合材料。 β-MnO2的量的增加导致所获得的复合物的酸性增加,这是由于过量的H +吸附在氧化物表面上。复合材料的热稳定性随着[苯胺]和搅拌时间的增加而降低,而随着β-MnO2含量的增加而增加。复合材料在直接红81,酸性蓝92和靛蓝胭脂红染料的氧化降解中的应用在存在H2O2作为氧化剂的情况下表现出良好的催化活性。反应遵循一级动力学,并确定速率常数。降解反应涉及复合材料的PANI对应物对H2O2分解的催化作用,这可以导致HO中心点自由基的生成,作为攻击目标染料的高效氧化剂。这些反应的详细动力学研究和机理在我们小组中正在考虑中。由Elsevier Inc.发布

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