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Influence of nanocomposite on photo-degrading Rhodamine B and Rose Bengal dye pollutants

机译:纳米复合材料对光降解罗丹明B及玫瑰孟加拉染料污染物的影响

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Reduced graphene oxide/titanium oxide-nanostructured composite (RGO/ was prepared by combining Hummer's synthesized graphene oxide and solvothermally synthesized nanoparticles ( through a facile ultrasonication-mediated mechanical mixing method. Structural and morphological evidences from XRD and SEM results confirmed that the as-prepared composed of mixed phases, anatase phase with body centred tetragonal crystal structured prism-like architecture, rutile phase with primitive tetragonal crystal-structured bipyramid-like architecture and hence, system exhibited the similar structural and morphological features. Band gap energy of was reduced from 2.98 to 2.91 eV due to the presence of RGO and hence, the light absorption range was extended to visible region. In addition, RGO acted as the electron acceptor and hence, the separation efficiency of photo-generated electron-hole pairs increased effectively, and this prevented the recombination process in system. Thus, system exhibited greater efficiency towards degrading Rhodamine B (RhB) and Rose Bengal (RB) dye pollutants than bare under sonophotocatalytic condition with natural sunlight irradiation. The possible mechanisms responsible for the enhanced efficiency are explained in this study using appropriate characterization techniques.
机译:通过将悍马的合成的石墨烯氧化物和溶剂热合成的纳米颗粒组合(通过容易超声介导的机械混合方法来制备氧化钛烯氧化物/氧化钛 - 纳米结构复合材料由混合阶段,锐钛矿相位,具有身体居中的四方晶体结构的棱镜式架构,金红石相位与原始四方晶体结构的双滤网状结构,因此,系统表现出类似的结构和形态特征。带隙能量从2.98降低由于RGO的存在,到2.91eV,因此,光吸收范围延伸到可见区域。此外,RGO作为电子受体,因此,光产生的电子孔对的分离效率有效地增加,这防止系统中的重组过程。因此,系统表现出大型R效率降解罗丹明B(rhB)和玫瑰瓣(RB)染料污染物,而不是在SonoOphotophatalytic病症下与天然阳光照射。本研究使用适当的表征技术解释了对增强效率负责的可能机制。

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