首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Microscale Hierarchical Three-Dimensional Flowerlike TiO2/PANI Composite: Synthesis, Characterization, and Its Remarkable Photocatalytic Activity on Organic Dyes under UV-Light and Sunlight Irradiation
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Microscale Hierarchical Three-Dimensional Flowerlike TiO2/PANI Composite: Synthesis, Characterization, and Its Remarkable Photocatalytic Activity on Organic Dyes under UV-Light and Sunlight Irradiation

机译:微米级三级花状TiO2 / PANI复合材料的合成,表征及其在紫外光和日光照射下对有机染料的显着光催化活性

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摘要

A microscale hierarchical 3D flowerlike TiO2/PANI composite with enhanced photocatalytic activity was synthesized via a sol-gel method, and the as-synthesized samples were characterized by XRD, SEM, TEM, ET-IR, UV- vis adsorption, BJH, and TGA/DSC. The outcome of the photocatalytic experimental demonstrating the TiO2/PANI hybrid with a Ti/ANI (aniline) molar ratio of 1:1 (denoted as T/P) showed high photocatalytic activity upon the degradation of Congo red (CR) and methyl orange (MO) under both UV-light and sunlight irradiation. The unique hierarchical 3D flowerlike structure endows the T/P hybrid with a large surface area of 38.81 m~2/g. The intermeshed PANI nanoflakes could make full use of the light resource by multiple reflections between the nanoflakes. Moreover, the intrinsic cavity of the hollow TiO2 nanoparticles can also increase the light-capturing efficiency. The synergistic effect between PANI and TiO2 hollow nanoparticles results in a reduction of the photoinduced electron-hole recombination rate as well as enhanced photocatalytic activity under UV-light and sunlight. Given the unique spatial structure and high photocatalytic characteristics of the T/P composite, there is great potential for applications in water treatment
机译:通过溶胶-凝胶法合成了具有增强的光催化活性的微米级分层3D花状TiO2 / PANI复合材料,并通过XRD,SEM,TEM,ET-IR,UV-vis吸附,BJH和TGA表征了合成后的样品/ DSC。光催化实验的结果表明,Ti / ANI(苯胺)摩尔比为1:1(表示为T / P)的TiO2 / PANI杂化物显示出对刚果红(CR)和甲基橙( MO)在紫外线和阳光照射下。独特的分层3D花状结构使T / P杂种具有38.81 m〜2 / g的大表面积。相互交织的PANI纳米薄片可以通过纳米薄片之间的多次反射来充分利用光源。而且,中空TiO 2纳米粒子的本征腔也可以提高光捕获效率。 PANI和TiO2中空纳米粒子之间的协同作用导致光致电子-空穴复合率降低,并增强了在紫外线和阳光下的光催化活性。鉴于T / P复合材料独特的空间结构和高光催化特性,在水处理中有巨大的应用潜力

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