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First principles insights into improved catalytic performance of BaTiO3- graphene nanocomposites in conjugation with experimental investigations

机译:结合BaBa3-石墨烯纳米复合材料改善催化性能的第一原理见解与实验研究

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摘要

The present work aims to provide first principles insights into the catalytic performance of composites based on BaTiO3 particles decorated over reduced graphene oxide (rGO). Examination regarding the orbital contributions of valence states, conduction states, interaction. surface and anchoring of perovskite over rGO have been carried out. Theoretical results thus obtained have been validated using experimental investigation. Further experiments have also been conducted to analyze the catalytic performance of composites with respect to multiple advanced oxidation processes. Charge separation has been improved due to rGO acting as macromolecular photosensitizer. Degradation of xanthene dye (Rhoda mine B) and methyl orange (MO) assisted in evaluation of the catalytic performance. Acoustic irradiation provides an additional route to improve degradation by ameliorating catalytic activity (from 0.036 min to 0.099 min in RhB especially). Synergistic effect obtained through conjugated benefits of oxidation processes with proposed composite, played a crucial role in improving the overall efficiency. The cumulative outcome of the results indicates superior performance of BaTiO3-rGO composites for green and sustainable water treatment applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本工作旨在为基于还原氧化石墨烯(rGO)修饰的BaTiO3颗粒的复合材料的催化性能提供第一原理见解。关于价态,传导态,相互作用的轨道贡献的检验。钙钛矿在rGO上的表面和锚固已经完成。由此获得的理论结果已通过实验研究得到验证。还进行了进一步的实验,以分析复合材料在多个高级氧化过程中的催化性能。由于rGO充当高分子光敏剂,电荷分离得到了改善。 an吨染料(Rhoda矿B)和甲基橙(MO)的降解有助于评估催化性能。声辐射通过改善催化活性(特别是在RhB中从0.036分钟到0.099分钟)提供了另一条改善降解的途径。通过氧化工艺与拟议的复合材料的共轭优势获得的协同效应,在提高整体效率方面起着至关重要的作用。结果的累积结果表明,BaTiO3-rGO复合材料在绿色和可持续水处理应用中具有优异的性能。 (C)2016 Elsevier Ltd.保留所有权利。

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