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用于高度增强太阳能驱动光催化活性的基于石墨烯的等离子体纳米复合材料。

Graphene-based plasmonic nanocomposites for highly enhanced solar-driven photocatalytic activities.

作者信息

Adam Rania E, Chalangar Ebrahim, Pirhashemi Mahsa, Pozina Galia, Liu Xianjie, Palisaitis Justinas, Pettersson Håkan, Willander Magnus, Nur Omer

机构信息

Department of Sciences and Technology, Linköping University Campus Norrköping SE-601 74 Norrköping Sweden

School of Information Technology, Halmstad University SE-301 18 Halmstad Sweden.

出版信息

RSC Adv. 2019 Sep 26;9(52):30585-30598. doi: 10.1039/c9ra06273d. eCollection 2019 Sep 23.

Abstract

High-efficiency photocatalysts are crucial for the removal of organic pollutants and environmental sustainability. In the present work, we report on a new low-temperature hydrothermal chemical method, assisted by ultrasonication, to synthesize disruptive plasmonic ZnO/graphene/Ag/AgI nanocomposites for solar-driven photocatalysis. The plasmonic nanocomposites were investigated by a wide range of characterization techniques, confirming successful formation of photocatalysts with excellent degradation efficiency. Using Congo red as a model dye molecule, our experimental results demonstrated a photocatalytic reactivity exceeding 90% efficiency after one hour simulated solar irradiation. The significantly enhanced degradation efficiency is attributed to improved electronic properties of the nanocomposites by hybridization of the graphene and to the addition of Ag/AgI which generates a strong surface plasmon resonance effect in the metallic silver further improving the photocatalytic activity and stability under solar irradiation. Scavenger experiments suggest that superoxide and hydroxyl radicals are responsible for the photodegradation of Congo red. Our findings are important for the fundamental understanding of the photocatalytic mechanism of ZnO/graphene/Ag/AgI nanocomposites and can lead to further development of novel efficient photocatalyst materials.

摘要

高效光催化剂对于去除有机污染物和实现环境可持续性至关重要。在本工作中,我们报道了一种新的低温水热化学方法,该方法借助超声处理,用于合成用于太阳能驱动光催化的具有破坏作用的等离子体ZnO/石墨烯/Ag/AgI纳米复合材料。通过多种表征技术对等离子体纳米复合材料进行了研究,证实成功形成了具有优异降解效率的光催化剂。以刚果红作为模型染料分子,我们的实验结果表明,在模拟太阳光照一小时后,光催化反应活性效率超过90%。降解效率的显著提高归因于石墨烯杂化改善了纳米复合材料的电子性能,以及添加的Ag/AgI在金属银中产生了强烈的表面等离子体共振效应,进一步提高了光催化活性和在太阳光照下的稳定性。清除剂实验表明,超氧自由基和羟基自由基是刚果红光降解的原因。我们的研究结果对于从根本上理解ZnO/石墨烯/Ag/AgI纳米复合材料的光催化机理具有重要意义,并可推动新型高效光催化剂材料的进一步发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5fe/9072162/e383a3ea803e/c9ra06273d-f1.jpg

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