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首页> 外文期刊>ACS Omega >Graphene-Coupled ZnO: A Robust NIR-Induced Catalyst for Rapid Photo-Oxidation of Cyanide
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Graphene-Coupled ZnO: A Robust NIR-Induced Catalyst for Rapid Photo-Oxidation of Cyanide

机译:石墨烯偶联的ZnO:一种强大的NIR诱导的氰化物快速光氧化催化剂

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Herein, we report the modulation of ZnO for enhancement of its ability toward plasmonic absorption of near-infrared (NIR) photons through coupling of graphene (GR). The reported modification led GR–ZnO to be a promising photocatalyst by the complete removal of poisonous and nonvolatile potassium cyanide from water. The photocatalytic degradation of cyanide was revealed by exposing it to NIR laser and comparing with the rate of UV, visible, and sunlight using their apparent reaction rate constants derived from the Langmuir–Hinshelwood model. The heteronanostructured GR–ZnO promoted rapid photo-oxidation of cyanide under illumination with NIR laser rather than UV, visible, and sunlight. It was assessed that the photothermal effect (PTE) is the main cause for higher catalytic efficiency of GR–ZnO in the presence of NIR radiations. Except for the NIR radiations, GR–ZnO does not show any indication of PTE by irradiating with UV, visible, or sunlight. On account of its significance, the PTE of GR–ZnO in KCN solution was evaluated and compared with its individual components viz., GR and ZnO upon exposure to a 980 nm laser system. Furthermore, it has been revealed that the PTE of GR–ZnO was proportional to its concentration. In addition to its effectiveness in the degradation of cyanide, GR–ZnO retained its special structure and exhibited an outstanding photostability after its repeated use in three successive cycles.
机译:在本文中,我们报告了ZnO的调制,旨在通过耦合石墨烯(GR)增强其对近红外(NIR)光子的等离子体吸收的能力。通过完全去除水中有毒和不挥发的氰化钾,已报道的改性导致GR-ZnO成为有前途的光催化剂。氰化物的光催化降解是通过将其暴露于NIR激光中并使用从Langmuir-Hinshelwood模型得出的表观反应速率常数与紫外线,可见光和阳光的速率进行比较来揭示的。异质结构的GR-ZnO在NIR激光而不是紫外线,可见光和日光照射下促进了氰化物的快速光氧化。据评估,在近红外辐射的存在下,光热效应(PTE)是GR-ZnO催化效率更高的主要原因。除NIR辐射外,GR-ZnO不会通过紫外线,可见光或日光照射显示任何PTE迹象。考虑到其重要性,评估了KCN溶液中GR–ZnO的PTE,并与暴露于980 nm激光系统的GR,ZnO的各个成分进行了比较。此外,已经发现GR-ZnO的PTE与浓度成正比。 GR-ZnO除具有降解氰化物的功效外,还保留了其特殊的结构,并且在连续三个循环中重复使用后,仍表现出出色的光稳定性。

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