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首页> 外文期刊>Journal of Colloid and Interface Science >One-step synthesis of reduced graphene oxide based ceric dioxide modified with cadmium sulfide (CeO2/CdS/RGO) heterojunction with enhanced sunlight-driven photocatalytic activity
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One-step synthesis of reduced graphene oxide based ceric dioxide modified with cadmium sulfide (CeO2/CdS/RGO) heterojunction with enhanced sunlight-driven photocatalytic activity

机译:用硫化镉(CEO2 / CDS / RGO)异质结改性石墨烯基二氧化铈二氧化碳的一步合成,具有增强的阳光驱动的光催化活性

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Heterojunction photocatalyst with efficient photocatalytic performance can remarkably promote the separation of photogenerated charge carriers. Herein, a ternary photocatalyst, reduced graphene oxide (RGO) based CeO2 modified with CdS (CeO2/CdS/RGO), was synthesized by a simple one-step hydrothermal method as a bifunctional catalyst for both photodegradation and photoreduction. The ternary composite exhibited a 90.04% photodegradation efficiency to ciprofloxacin (CIP) under simulated sunlight irradiation for 2 h, much higher than CeO2 (54%). Moreover, CeO2/CdS/RGO showed broad applicability to the photodegradation of organic pollutants, including norfloxacin (NFX), tetracycline (TC), methylene blue (MB), rhodamine B (RhB), methyl violet (MV), methyl orange (MO) and reactive blue BES (RB). Besides, CeO2/CdS/RGO exhibited a 100.00% photoreduction efficiency to Cr(VI) within 60 min. The improvement of the photocatalytic performance is ascribed to the modification of CeO2 with CdS, which improves the separation efficiency of photogenerated carriers. Also, the modification with RGO inhibits the agglomeration of CeO2, improves the adsorption capacity toward pollutants and provides another nanochannel to separate photogenerated electron-hole (e --h(+)) pairs. Additionally, the photocatalytic mechanism of CeO2/CdS/RGO is explored. It is expected that this work would provide a promising way to construct efficient and versatile RGO-based photocatalysts applied to environmental remediation. (C) 2021 Elsevier Inc. All rights reserved.
机译:具有高效光催化性能的异质结光催化剂能显著促进光生载流子的分离。在此,通过简单的一步水热法合成了一种三元光催化剂,即CdS修饰的还原氧化石墨烯(RGO)基CeO2(CeO2/CdS/RGO),作为光降解和光还原的双功能催化剂。在模拟太阳光照射2h下,三元复合材料对环丙沙星(CIP)的光降解效率为90.04%,远高于CeO2(54%)。此外,CeO2/CdS/RGO对有机污染物的光降解表现出广泛的适用性,包括诺氟沙星(NFX)、四环素(TC)、亚甲基蓝(MB)、罗丹明B(RhB)、甲基紫(MV)、甲基橙(MO)和活性蓝BES(RB)。此外,CeO2/CdS/RGO在60min内对Cr(VI)的光还原效率为100.00%。光催化性能的提高归因于CdS对CeO2的改性,从而提高了光生载体的分离效率。此外,RGO修饰抑制了CeO2的团聚,提高了对污染物的吸附能力,并提供了另一个纳米通道来分离光生电子-空穴(e--h(+))对。此外,还探讨了CeO2/CdS/RGO的光催化机理。这项工作有望为构建高效、多功能的RGO基光催化剂提供一条有希望的途径,用于环境修复。(c)2021爱思唯尔公司保留所有权利。

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