...
首页> 外文期刊>RSC Advances >Enhanced photocatalytic activity exhibited by PTh/[Fe(CN)(3)(NO)(bpy)]center dot 4H(2)O nanocomposite fibers via a synergistic approach
【24h】

Enhanced photocatalytic activity exhibited by PTh/[Fe(CN)(3)(NO)(bpy)]center dot 4H(2)O nanocomposite fibers via a synergistic approach

机译:PTh / [Fe(CN)(3)(NO)(bpy)]中心点4H(2)O纳米复合纤维通过协同方法表现出增强的光催化活性

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Successful synthesis of a photoadduct, [Fe(CN)(3)(NO)(bpy)]center dot 4H(2)O and its use as a filler in polythiophene (PTh) matrix for synthesizing PTh/[Fe(CN)(3)(NO)(bpy)]center dot 4H(2)O nanocomposite fibers by chemical polymerization. [Fe(CN)(3)(NO)(bpy)]center dot 4H(2)O exhibited wide transparency in the entire visible region, thereby showing non-linear optical behavior (NLO) which has been confirmed by a second harmonic generation (SHG) test. The fibrous structure of the nanocomposite has been confirmed from TEM. Thermal analysis revealed increased thermal stability of the nanocomposite fibers than pure PTh. A dielectric study showed the capacitive effect of the nanocomposite fibers at low frequencies and a conductivity effect at high frequencies. This behavior may provide an absorptive and reflective mechanism to EMI shielding. Meanwhile, a higher photocatalytic activity of the present material for methyl orange (MO) dye has been observed than for many other two component systems as reported in the literature. This has been attributed to the presence of a synergistic effect between PTh and photoadduct particles which is believed to play an essential role in affecting the photoreactivity. From BET, the surface area of the nanocomposite has been found to be 18.9 m(2) g(-1). The main contributing factor to the enhanced photocatalytic activity of the nanocomposite fibers has been attributed to the interface contact between PTh and photoadduct particles, as is evidenced by PL measurements. Also, the degradation mechanism of the photocatalytic process has been proposed and the active species involved to cause degradation are confirmed by using different scavengers. Kinetic study revealed the degradation process to follow second order kinetics with an observed rate constant of 7 x 10(-4) L mol(-1) s(-1).
机译:成功合成光加合物[Fe(CN)(3)(NO)(bpy)]中心点4H(2)O及其在聚噻吩(PTh)基质中用作合成PTh / [Fe(CN)( 3)(NO)(bpy)]中心点4H(2)O纳米复合纤维的化学聚合反应。 [Fe(CN)(3)(NO)(bpy)]中心点4H(2)O在整个可见光区域显示出较宽的透明度,从而显示出非线性光学行为(NLO),该现象已被二次谐波产生所证实(SHG)测试。纳米复合材料的纤维结构已经由TEM证实。热分析表明,纳米复合纤维的热稳定性高于纯PTh。介电研究显示了纳米复合纤维在低频下的电容效应和高频下的电导效应。此行为可以为EMI屏蔽提供吸收和反射机制。同时,已经观察到本材料对甲基橙(MO)染料的光催化活性比文献中报道的许多其他两种组分系统更高。这归因于在PTh和光加合物颗粒之间存在协同作用,据认为在影响光反应性方面起着至关重要的作用。从BET,发现纳米复合材料的表面积为18.9 m(2)g(-1)。正如PL测量所证明的,促成纳米复合纤维光催化活性增强的主要因素是PTh与光加合物颗粒之间的界面接触。而且,已经提出了光催化过程的降解机理,并且通过使用不同的清除剂来确认引起降解的活性物种。动力学研究表明降解过程遵循二级动力学,观察到的速率常数为7 x 10(-4)L mol(-1)s(-1)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号