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各向异性氧化锌纳米结构及其纳米复合材料作为光催化修复的先进平台

Anisotropic ZnO nanostructures and their nanocomposites as an advanced platform for photocatalytic remediation.

作者信息

Verma Swati, Younis Sherif A, Kim Ki-Hyun, Dong Fan

机构信息

Department of Civil & Environmental Engineering, Hanyang University, 222 Wangsimni-Ro, Seoul 04763, Republic of Korea.

Department of Civil & Environmental Engineering, Hanyang University, 222 Wangsimni-Ro, Seoul 04763, Republic of Korea; Analysis and Evaluation Department, Egyptian Petroleum Research Institute, Nasr City, Cairo 11727, Egypt.

出版信息

J Hazard Mater. 2021 Aug 5;415:125651. doi: 10.1016/j.jhazmat.2021.125651. Epub 2021 Mar 16.

Abstract

In pursuit of advanced heterogeneous photocatalysts, ZnO has emerged as a promising option for solar-driven heterogeneous photocatalyst with many advantageous properties (e.g., optical band structure and electronic properties). However, as the efficacy of such system can also be limited by a number of demerits (e.g., fast recombination of charge carriers and limited photon absorption), considerable efforts are needed for its effective and practical scale-up. This article provides a detailed literature review of the synthesis and modification of ZnO nanostructures with tuned band structures and controllable morphologies for solar light harvesting. The potential of anisotropic ZnO nanostructures is also discussed with respect to the photocatalytic degradation of organic/inorganic water pollutants. Further, the role of various metal dopants is discussed for the enhancement of photocatalytic activity along with evaluation of their photocatalytic performances under UV-visible or solar irradiation. Finally, our discussions are expanded to describe the prospects of developed ZnO nano-photocatalysts for real-world applications with respect to light-harvesting efficiency and mechanical stability.

摘要

为了寻求先进的异质光催化剂,氧化锌已成为太阳能驱动的异质光催化剂的一个有前途的选择,它具有许多有利特性(如能带结构和电子性质)。然而,由于这种系统的效能也可能受到一些缺点的限制(如载流子的快速复合和有限的光子吸收),需要付出相当大的努力才能实现其有效和实际的放大。本文对具有可调谐能带结构和可控形态的氧化锌纳米结构的合成与改性进行了详细的文献综述,以用于太阳能光捕获。还讨论了各向异性氧化锌纳米结构在光催化降解有机/无机水污染物方面的潜力。此外,讨论了各种金属掺杂剂在增强光催化活性方面的作用,并评估了它们在紫外-可见光或太阳光照射下的光催化性能。最后,我们的讨论扩展到描述已开发的氧化锌纳米光催化剂在实际应用中关于光捕获效率和机械稳定性的前景。

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