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首页> 外文期刊>Clays and clay minerals >SYNTHESIS, CHARACTERIZATION, AND ELECTROKINETIC PROPERTIES OF POLYINDENE/COLEMANITE CONDUCTING COMPOSITE
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SYNTHESIS, CHARACTERIZATION, AND ELECTROKINETIC PROPERTIES OF POLYINDENE/COLEMANITE CONDUCTING COMPOSITE

机译:聚丙烯/钙锰矿导电复合材料的合成,表征和电动力学性质

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The aim of the aqueous electrokinetic experiments in the present study was to assess the relative contribution of the conducting polyindene (PIn) and inorganic colemanite components to the zeta (ζ) potentials of the composite particles, thus providing further insight into their surface composition in the dispersed state and establishing colloidally stable conditions for potential rheological, industrial applications. For this, PIn and a PIn/colemanite composite (containing 5 wt.% colemanite) were synthesized by chemical oxidative polymerization using FeCl_3 as an oxidizing agent. Colemanite, PIn, and PIn/colemanite composite samples were characterized by Fourier-transform infrared spectroscopy, elemental analysis, conductivity, dielectric constant, magnetic susceptibility, density, particle-size measurements, thermogravimetric analysis, differential scanning calorimetry, X-ray diffraction analysis, and scanning electron microscopy methods. The electrokinetic properties of colemanite and PIn/colemanite composite dispersions were determined by ζ-potential measurements in aqueous medium, taking into account the effects of time, pH, various electrolytes, surfactants, and temperature. The pH was observed to have a greater effect on the ζ potentials of colemanite in water but caused only slight changes in the presence of cationic (NaCl, BaCl_2, AlCl_3) and anionic (NaCl, Na_2SO_4) electrolytes. Increased pH values shifted the ζ potentials of PIn/colemanite composite dispersions to more negative values. The most effective surfactant acting on the ζ potentials of colemanite and PIn/colemanite composite dispersions was cetyltrimethylammonium bromide (CTAB), which shifted the ζ potentials to more positive regions. Elevated temperatures caused almost no change to the ζ potentials of either the colemanite or the PIn/colemanite composite dispersions.
机译:本研究中的水性电动实验的目的是评估导电聚茚(PIn)和无机硬锰矿组分对复合颗粒的Zeta(ζ)电位的相对贡献,从而进一步了解它们的表面组成。分散状态并为潜在的流变,工业应用建立胶体稳定条件。为此,使用FeCl_3作为氧化剂通过化学氧化聚合合成了PIn和PIn /钴锰矿复合物(包含5重量%的钴锰矿)。通过傅立叶变换红外光谱,元素分析,电导率,介电常数,磁化率,密度,粒度测量,热重分析,差示扫描量热法,X射线衍射分析,硅藻土,PIn和PIn /钴锰矿复合样品进行表征和扫描电子显微镜方法。考虑到时间,pH,各种电解质,表面活性剂和温度的影响,通过在水性介质中的ζ电位测量来确定硬锰矿和PIn /硬锰矿复合分散体的电动特性。观察到pH值对水中硬锰矿的ζ电位有更大的影响,但在阳离子电解质(NaCl,BaCl_2,AlCl_3)和阴离子电解质(NaCl,Na_2SO_4)的存在下仅引起很小的变化。 pH值的增加将PIn /钴锰矿复合分散液的ζ电位移至更多的负值。作用于硬锰矿和PIn /硬锰矿复合分散体ζ电势的最有效的表面活性剂是十六烷基三甲基溴化铵(CTAB),它使ζ电势转移到更正的区域。升高的温度几乎不会改变硬锰矿或PIn /硬锰矿复合分散液的ζ电位。

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