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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis and characterization of PPY/K[Fe(CN)(3)(OH)(en)] nanocomposite: Study of photocatalytic, sorption, electrical, and thermal properties
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Synthesis and characterization of PPY/K[Fe(CN)(3)(OH)(en)] nanocomposite: Study of photocatalytic, sorption, electrical, and thermal properties

机译:PPY / K [Fe(CN)(3)(OH)(en)]纳米复合材料的合成与表征:光催化,吸附,电和热性质的研究

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This work involves the synthesis of nanocomposite of Polypyrrole (PPY) with photoadduct {K[Fe(CN)(3)(OH)(en)]} via in-situ oxidative chemical polymerisation. Photoadduct is synthesized by irradiating equimolar mixture of potassium hexacyanoferrate (III) and ethylenediamine (en) and is then reduced to nanosize by high energy ball mill. Successful synthesis of nanophotoadduct is confirmed by elemental analyser, UV-Vis, and FTIR. The nanocomposite of PPY and photoadduct has been characterised by SEM, TEM, FTIR, XRD, TGA, UV-Vis spectroscopy, I-V characteristics, and dielectric analysis for structural, thermal, optical, electrical, and dielectric properties. The average particle size of nanophotoadduct and nanocomposite has been found to be 80 and 84 nm, respectively. The thermal stability of nanocomposite is enhanced. The nanocomposite shows high value of dielectric constant (5 x 10(3) at10(3) Hz) and ac conductivity (7.0 x 10(8) Sm-1 at 10(6) Hz) as compared with pure PPY. The high value of dielectric constant can make the material suited for energy storage applications. The nanocomposite shows higher photocatalytic activity as compared with pure PPY and a high value of distribution coefficient (K-d) has been obtained for Pb2+, Zn2+, and Cd2+ ions, hence, can act as an efficient material for removal of dyes and heavy metal ions in waste water. Thus, photoadduct of K-3[Fe(CN)(6)] and ethylenediamine(en), a new kind of filler, has succeeded in improving the properties of PPY with respect to thermal stability, high dielectric constant, high ac conductivity, efficient photocatalytic activity, and high K-d value for toxic metal ions. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43487.
机译:这项工作涉及通过原位氧化化学聚合与光加合物{K [Fe(CN)(3)(OH)(en)]}合成聚吡咯(PPY)纳米复合材料。通过辐照六氰基铁酸钾(III)和乙二胺(en)的等摩尔混合物来合成光加合物,然后通过高能球磨将其还原为纳米尺寸。元素分析仪,UV-Vis和FTIR证实了纳米光加合物的成功合成。 PPY和光加合物的纳米复合材料已通过SEM,TEM,FTIR,XRD,TGA,UV-Vis光谱,IV特性以及介电分析对结构,热,光学,电和介电性能进行了表征。已发现纳米光加合物和纳米复合材料的平均粒径分别为80和84nm。纳米复合材料的热稳定性得到增强。与纯PPY相比,纳米复合材料显示出高介电常数(10(3)Hz时为5 x 10(3))和交流电导率(10(6)Hz时为7.0 x 10(8)Sm-1)。高介电常数值可使该材料适合储能应用。与纯PPY相比,该纳米复合材料显示出更高的光催化活性,并且已获得Pb2 +,Zn2 +和Cd2 +离子的高分布系数(Kd)值,因此可以作为一种有效的材料去除染料和重金属离子。废水。因此,K-3 [Fe(CN)(6)]和一种新型填料乙二胺(en)的光加合物已成功改善了PPY在热稳定性,高介电常数,高ac导电性方面的性能,高效的光催化活性,对有毒金属离子的Kd值高。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,43487。

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