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通过与g-CN构建异质结提高ZnO纳米线的光催化性能

Boosting Photocatalytic Performance of ZnO Nanowires via Building Heterojunction with g-CN.

作者信息

Wang Yayang, Liu Ziyi, Li Yuesheng, Yang Xiaojie, Zhao Lingfei, Peng Jian

机构信息

Hubei Key Laboratory of Radiation Chemistry and Functional Materials, School of Nuclear Technology and Chemistry & Biology, Hubei University of Science and Technology, Xianning 437100, China.

School of Chemistry and Chemical Engineering, Wuhan University of Science and Technology, Wuhan 430074, China.

出版信息

Molecules. 2023 Jul 21;28(14):5563. doi: 10.3390/molecules28145563.

Abstract

The development of a stable and highly active photocatalyst has garnered significant attention in the field of wastewater treatment. In this study, a novel technique involving a facile stirring method was devised to fabricate an array of g-CN/ZnO nanowire (ZnO NW) composites. Through the introduction of g-CN to augment the generation of electron-hole pairs upon exposure to light, the catalytic efficacy of these composites was found to surpass that of the pristine ZnO NWs when subjected to simulated sunlight. The photocatalytic performance of a 20 mg·L methylene blue solution was found to be highest when the doping rate was 25 wt%, resulting in a degradation rate of 99.1% after 60 min. The remarkable enhancement in catalytic efficiency can be ascribed to the emergence of a captivating hetero-junction at the interface of g-CN and ZnO NWs, characterized by a harmoniously aligned band structure. This alluring arrangement effectively curtailed charge carrier recombination, amplified light absorption, and augmented the distinct surface area, culminating in a notable boost to the photocatalytic prowess. These findings suggest that the strategic engineering of g-CN/ZnO NW heterostructures holds tremendous promise as a pioneering avenue for enhancing the efficacy of wastewater treatment methodologies.

摘要

开发一种稳定且高活性的光催化剂在废水处理领域引起了广泛关注。在本研究中,设计了一种涉及简便搅拌方法的新技术来制备一系列g-CN/ZnO纳米线(ZnO NW)复合材料。通过引入g-CN以增加光照时电子-空穴对的产生,发现这些复合材料在模拟太阳光照射下的催化效率超过了原始ZnO NWs。当掺杂率为25 wt%时,发现20 mg·L亚甲基蓝溶液的光催化性能最高,60分钟后降解率达到99.1%。催化效率的显著提高可归因于在g-CN和ZnO NWs界面处出现了引人注目的异质结,其特征是能带结构和谐对齐。这种诱人的排列有效地减少了电荷载流子复合,增强了光吸收,并增加了比表面积,最终显著提高了光催化能力。这些发现表明,g-CN/ZnO NW异质结构的策略性构建作为提高废水处理方法效率的开创性途径具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ab5/10385347/53aa995c3abc/molecules-28-05563-g001.jpg

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