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氧化锌/氧化铜/硅纳米线阵列作为具有增强光降解性能的基于三元异质结构的光催化剂。

ZnO/CuO/Si Nanowire Arrays as Ternary Heterostructure-Based Photocatalysts with Enhanced Photodegradation Performances.

作者信息

Hsiao Po-Hsuan, Li Tsai-Ching, Chen Chia-Yun

机构信息

Department of Materials Science and Engineering, National Cheng Kung University, Tainan, 70101, Taiwan.

Hierarchical Green-Energy Materials (Hi-GEM) Research Center, National Cheng Kung University, Tainan, 70101, Taiwan.

出版信息

Nanoscale Res Lett. 2019 Jul 23;14(1):244. doi: 10.1186/s11671-019-3093-9.

Abstract

Ternary ZnO/CuO/Si nanowire arrays with vertical regularity were prepared with all-solution processed method at low temperature. In addition to the detailed characterizations of morphologies and crystallographic patterns, the analyses of photoluminescence and photocurrents revealed the sound carrier separation owing from the established step-like band structures. By modeling the photodegradation process of the prepared heterostructures through kinetic investigations and scavenger examinations, the photocatalytic removal of MB dyes was found to follow the second-order kinetic model with reaction constant more than 15.3 times higher than bare Si nanowires and achieved 5.7 times and 3.4 times than ZnO/Si and CuO/Si binary heterostructures, respectively. Moreover, the highly stable photoactivity of ZnO/CuO/Si photocatalysts was evidenced from the repeated photodegradation tests, which demonstrated the robust photocatalytic efficiency after cycling uses. The facile synthesis along with in-depth mechanism study of such ternary heterostructures could be potential for practical treatment for organic pollutants. KEYWORDS: HeterostructurePhotocatalystSilicon nanowire arraysKinetic study.

摘要

采用全溶液处理法在低温下制备了具有垂直规则性的三元ZnO/CuO/Si纳米线阵列。除了对形貌和晶体结构进行详细表征外,光致发光和光电流分析表明,由于所建立的阶梯状能带结构,载流子能够有效分离。通过动力学研究和清除剂检测对制备的异质结构的光降解过程进行建模,发现MB染料的光催化去除遵循二级动力学模型,反应常数比裸Si纳米线高15.3倍以上,分别是ZnO/Si和CuO/Si二元异质结构的5.7倍和3.4倍。此外,重复的光降解测试证明了ZnO/CuO/Si光催化剂具有高度稳定的光活性,表明其在循环使用后具有强大的光催化效率。这种三元异质结构的简便合成及其深入的机理研究对于有机污染物的实际处理具有潜在意义。关键词:异质结构;光催化剂;硅纳米线阵列;动力学研究

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