首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Surfactant free, simple, morphological and defect engineered ZnO nanocatalyst: Effective study on sunlight driven and reusable photocatalytic properties
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Surfactant free, simple, morphological and defect engineered ZnO nanocatalyst: Effective study on sunlight driven and reusable photocatalytic properties

机译:无表面活性剂,简单,形态学和缺陷工程的ZnO纳米催化剂:对阳光驱动和可重复使用的光催化性能的有效研究

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We demonstrate the facile synthesis of solution grown ZnO structures (rods, buds, brooms, spindles, stars, flowers, multipods) without using any surfactant and capping agents. Morphology of the nanostructures was simply controlled by varying the Zn supersaturation in the growth solution which transforms the growth mode from anisotropic to isotropic and then to hierarchical nature. All photocatalysts were characterized by X-ray diffraction, UV-vis absorption, photoluminescence, scanning electron microscopy, high resolution transmission electron microscopy analysis. ZnO nanoflowers show excellent photocatalytic (PC) degradation efficiency above 95% against Methyl orange, Rodamine B and Methylene blue dyes in 120 min under natural solar irradiation compared to the other nanostructures. It is noteworthy that the PC performance of the ZnO nanostructures correlates well with the defect states and the production of photo induced reactive oxide species (ROS). Investigations show that the enhanced PC performance of ZnO nanoflowers was due to the synergy of larger surface area and oxygen related defects assisted ROS production. The photocatalytic recycling ability of ZnO nanoflowers was investigated. ZnO flowers showed excellent recyclability with a slight decrease in photocatalytic efficiency after being subjected to ten consecutive cycles. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们展示了无需使用任何表面活性剂和封端剂即可轻松合成溶液生长的ZnO结构(棒,芽,扫帚,纺锤体,星形,花朵,多脚架)的方法。可以通过改变生长溶液中的Zn过饱和来简单地控制纳米结构的形态,这使生长模式从各向异性转变为各向同性,然后转变为分层性质。通过X射线衍射,UV-可见吸收,光致发光,扫描电子显微镜,高分辨率透射电子显微镜分析来表征所有光催化剂。与其他纳米结构相比,ZnO纳米花在自然光照射下在120分钟内对甲基橙,罗丹明B和亚甲基蓝染料具有95%以上的优异光催化(PC)降解效率。值得注意的是,ZnO纳米结构的PC性能与缺陷状态和光致活性氧化物(ROS)的产生密切相关。研究表明,ZnO纳米花的PC性能增强是由于较大表面积的协同作用以及与氧相关的缺陷辅助了ROS的产生。研究了ZnO纳米花的光催化回收能力。连续十个循环后,ZnO花显示出优异的可回收性,光催化效率略有下降。 (C)2016 Elsevier B.V.保留所有权利。

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