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Annealing Effects on the Photocatalytic Activity of ZnO Nanoparticles

机译:退火对ZnO纳米粒子光催化活性的影响

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This paper describes the development of ZnO nanoparticles by a chemical method, to test them in the photocatalysis of the degradation of textile dyes, using Rhodamine B (RhB) as a probe reaction. The samples were submitted to different heat treatments in order to observe the annealing effects on the photocatalytical properties, surface decontamination and the consequent particle change, in terms of crystallinity. The as-prepared samples (ZOA) correspond to a metastable phase (oxy or hydroxy zinc acetate) and post annealing leads to ZnO crystallization. In spite of the XRD patterns showing only the ZnO phase for heat treatment at 100℃, FTIR data show that carboxylate groups remains attached to the ZnO surface up to 300℃. Up to 300℃ the presence of these carboxylate groups, provided by the synthesis method, showed to be more relevant to photoactivity than the specific surface area. At higher temperatures, crystallinity becomes the dominant factor and an increasing of crystallinity favors the photoactivity.
机译:本文介绍了用化学方法开发的ZnO纳米颗粒,以若丹明B(RhB)作为探针反应,在光催化降解纺织品染料中对其进行了测试。为了观察退火对光催化性能,表面去污和随之而来的颗粒变化(结晶度)的影响,对样品进行了不同的热处理。制备的样品(ZOA)对应于亚稳态相(氧基或羟基乙酸锌锌),退火后导致ZnO结晶。尽管XRD图谱仅显示了在100℃下进行热处理的ZnO相,但FTIR数据表明,在300℃以下时,羧酸根仍然保留在ZnO表面。在高达300℃的温度下,通过合成方法提供的这些羧酸根基团的存在与光活性的关系比比表面积更重要。在较高温度下,结晶度成为主要因素,结晶度的增加有利于光活性。

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