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首页> 外文期刊>RSC Advances >Visible-light-driven photocatalytic degradation of safranin-T dye using functionalized graphene oxide nanosheet (FGS)/ZnO nanocomposites
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Visible-light-driven photocatalytic degradation of safranin-T dye using functionalized graphene oxide nanosheet (FGS)/ZnO nanocomposites

机译:使用功能化氧化石墨烯纳米片(FGS)/ ZnO纳米复合材料的可见光驱动的藏红素T染料光催化降解

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Photocatalysts suffer from a lack of separation of photogenerated excitons due to the fast recombination of charge carriers, so a strong synergistic effect exhibited by photocatalysts is promising for effective photocatalysis. Herein, we have synthesized efficient visible light functionalized graphene oxide nanosheet (FGS)/ZnO nanocomposite photocatalysts via a simple and economical approach with large scale production for practical applications. A series of nanocomposites (FGS/ZnO NCs) with different amounts by weight of graphene oxide (GO) have been synthesized via a facile solution route followed by calcination under environmental conditions. The phase, purity and morphological studies of the synthesized FGS/ZnO NCs were carried out using powder X-ray diffraction (XRD) and transmission electron microscopy (TEM). The optical properties were studied using UV-visible diffuse reflectance spectroscopy (DRS) and photoluminescence spectroscopy (PL). XRD results confirm the formation of a pure phase of ZnO in the FGS/ZnO NCs and TEM results show strongly adhered ZnO NPs on the surface of the FGS. DRS results confirm the extension of light absorption in the visible region while PL results confirm the effective separation of charge carriers in 0.09 wt% FGS/ZnO NCs. The synthesized photocatalyst efficiently degrades carcinogenic safranin-T dye under visible light illumination which is reported for the first time using FGS/ZnO nanocomposites. Photocatalytic studies confirm the higher photocatalytic activity of 0.09 wt% FGS/ZnO NCs (about 94.5%) towards the photodegradation of safranin-T dye in aqueous solution under visible light. The improved photocatalytic activity of 0.09 wt% FGS/ZnO NCs can be ascribed to the integrative synergistic effects of the enhanced adsorption capacity of safranin-T dye, effective separation of photogenerated excitons and effective interfacial hybridization of FGS and ZnO NCs. The generation of reactive oxygen species was confirmed using terephthalic acid as a probe molecule and a scavenger test was conducted in presence of histidine.
机译:由于电荷载流子的快速重组,光催化剂缺乏光生激子的分离,因此光催化剂表现出的强协同作用有望用于有效的光催化。在这里,我们已经通过简单,经济的方法合成了有效的可见光功能化的氧化石墨烯纳米片(FGS)/ ZnO纳米复合光催化剂,用于实际应用。已经通过一种简便的溶液路线合成了一系列纳米复合材料(FGS / ZnO NCs),这些纳米复合材料具有不同重量的氧化石墨烯(GO),然后在环境条件下进行煅烧。合成的FGS / ZnO NCs的相,纯度和形态研究是使用粉末X射线衍射(XRD)和透射电子显微镜(TEM)进行的。使用紫外可见漫反射光谱法(DRS)和光致发光光谱法(PL)研究了光学性质。 XRD结果证实在FGS / ZnO NC中形成纯的ZnO,TEM的结果表明FGS表面上牢固附着了ZnO NP。 DRS结果证实了可见光区域中光吸收的扩展,而PL结果证实了0.09 wt%FGS / ZnO NCs中载流子的有效分离。合成的光催化剂在可见光照射下可有效降解致癌的番红花T染料,这是首次使用FGS / ZnO纳米复合材料进行报道。光催化研究证实,在可见光下,0.09 wt%FGS / ZnO NCs(约94.5%)对藏红T染料在水溶液中的光降解具有更高的光催化活性。 0.09 wt%FGS / ZnO NCs的提高的光催化活性可以归因于番红素-T染料的吸附能力增强,光生激子的有效分离以及FGS和ZnO NCs的有效界面杂交的综合协同效应。使用对苯二甲酸作为探针分子确认了活性氧的产生,并在组氨酸存在下进行了清除剂测试。

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