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首页> 外文期刊>Journal of Materials Research >Solvent effect on the structure and photocatalytic behavior of TiO_2-RGO nanocomposites
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Solvent effect on the structure and photocatalytic behavior of TiO_2-RGO nanocomposites

机译:溶剂对TiO_2-RGO纳米复合材料的结构和光催化性能的影响

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There is no agreement regarding which solvent is more suitable to obtain sol-gel-derived titania (TiO2) samples with an enhanced photocatalytic behavior. Furthermore, the solvent effect on the preparation of TiO2-RGO (reduced graphene oxide) nanocomposites has not been published yet and could be an attractive experimental strategy to modulate structure and properties. On the basis of these observations, TiO2-RGO nanocomposites were fabricated in this study. It was evaluated for the influence of using either isopropyl (IsoprOH) or ethyl (EtOH) alcohol on the textural and photocatalytic properties of the prepared materials. The use of IsoprOH led to samples with smaller crystallite size, narrower apparent band gap, smaller isoelectric point, larger adsorption capacity, and higher photocatalytic activity. In addition, the incorporation of RGO into TiO2 greatly improved the adsorption capacity and photocatalytic activity of the latter. However, the optimal loading of RGO to prepare composites with enhanced photocatalytic activities was 1 wt%. This finding can be related to the stacking of RGO sheets when concentrations above 1 wt% are used, which could prevent UV light to reach the TiO2 particles and also decrease the photocatalytic capacity of the composites. Moreover, materials with RGO concentration above 1 wt% could exhibit a highly negatively charged surface, which may decrease the separation of the generated electron-hole pairs and lead to faster recombination rates of charge carriers.
机译:对于哪种溶剂更适合获得具有增强的光催化性能的溶胶-凝胶衍生的二氧化钛(TiO2)样品,尚无共识。此外,溶剂作用对制备TiO2-RGO(还原氧化石墨烯)纳米复合材料的影响尚未公开,可能是调节结构和性能的有吸引力的实验策略。基于这些观察,本研究制备了TiO2-RGO纳米复合材料。评估了使用异丙醇(IsoprOH)或乙基乙醇(EtOH)对制备材料的结构和光催化性能的影响。 IsoprOH的使用导致样品具有较小的微晶尺寸,较窄的表观带隙,较小的等电点,较大的吸附容量和较高的光催化活性。另外,将RGO掺入TiO 2中大大提高了其吸附能力和光催化活性。然而,制备具有增强的光催化活性的复合材料的RGO的最佳负载量为1重量%。当使用高于1 wt%的浓度时,该发现可能与RGO片的堆叠有关,这可能会阻止UV光到达TiO2颗粒并降低复合材料的光催化能力。此外,RGO浓度高于1 wt%的材料可能显示出高度带负电的表面,这可能会减少生成的电子-空穴对的分离并导致更快的电荷载流子复合率。

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