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Z型氮化碳/氧化钨异质结的构建及其优异的光电协同防腐性能

Construction and excellent photoelectric synergistic anticorrosion performance of Z-scheme carbon nitride/tungsten oxide heterojunctions.

作者信息

Ge Yunxiao, Guo Xiaojiao, Zhou Dan, Liu Jinku

机构信息

Key Laboratory for Advanced Materials, School of Chemistry and Molecular Engineering, East China University of Science and Technology (ECUST), Shanghai, 200237, P.R. China.

出版信息

Nanoscale. 2022 Sep 2;14(34):12358-12376. doi: 10.1039/d2nr03246e.

DOI:10.1039/d2nr03246e
PMID:35972035
Abstract

The use of heterojunctions for metal corrosion protection is a highly innovative and challenging task. Based on the composition and structure of tungsten oxide-based heterojunctions, Z-scheme heterojunctions were designed and synthesized by the electrostatic self-assembly method using energy band-matched g-CN and WO materials. Applied in the field of anticorrosion, they overcame the problems of poor reduction ability and transmission inefficiency of traditional materials. The Z-scheme heterojunctions ensured unidirectional electron transfer, while the aggregation of the retained strongly reduced electrons on the surface of the iron substrates provided a strong driving force for retarding corrosion occurrence. Meanwhile, the inherent shielding properties of the two-dimensional material g-CN and the confinement of chloride ions as an electroactive layer hindered the penetration of the corrosive solution. After being corroded for 72 h, the corrosion impedance of the g-CN/WO heterojunction system was improved by 640.11% compared with the epoxy resin coating. In addition, the g-CN/WO heterojunction was synthesized by using mixed valence tungsten oxide, which overcame the problems of photogenerated electron yield and lifetime, and enhanced the anticorrosion performance compared with a single g-CN phase. This research provided ideas for designing efficient and environmentally friendly heterojunction anticorrosion materials.

摘要

使用异质结进行金属腐蚀防护是一项极具创新性和挑战性的任务。基于氧化钨基异质结的组成和结构,通过使用能带匹配的g-CN和WO材料的静电自组装方法设计并合成了Z型异质结。将其应用于防腐领域,克服了传统材料还原能力差和传输效率低的问题。Z型异质结确保了单向电子转移,而保留在铁基体表面的强还原电子的聚集为延缓腐蚀发生提供了强大的驱动力。同时,二维材料g-CN的固有屏蔽性能以及作为电活性层对氯离子的限制阻碍了腐蚀性溶液的渗透。经过72小时的腐蚀后,g-CN/WO异质结体系的腐蚀阻抗比环氧树脂涂层提高了640.11%。此外,通过使用混合价态氧化钨合成了g-CN/WO异质结,克服了光生电子产率和寿命的问题,与单一g-CN相相比增强了防腐性能。该研究为设计高效、环保的异质结防腐材料提供了思路。

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