Jiao Yang, Pan Yuanyuan, Yang Moru, Li Zhen, Yu Jing, Fu Rong, Man Baoyuan, Zhang Chao, Zhao Xiaofei
School of Physics and Electronics, Shandong Normal University, Jinan 250014, China.
School of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252000, China.
Nanophotonics. 2024 Jan 23;13(3):307-318. doi: 10.1515/nanoph-2023-0659. eCollection 2024 Feb.
Hollow urchin-like substrates have been widely interested in the field of surface-enhanced Raman scattering (SERS) and photocatalysis. However, most reported studies are simple nanoscale urchin-like substrate with limited light trapping range and complicated preparation process. In this paper, a simple and effective controllable synthesis strategy based on micro-nano hierarchical urchin-like ZnO/Ag hollow spheres was prepared. Compared with the 2D structure and solid spheres, the 3D urchin-like ZnO/Ag hollow sphere has higher laser utilization and more exposed specific surface area due to its special hollow structure, which resulted in excellent SERS and photocatalytic performance, and successfully realize the detection and photodegradation of antibiotics. The limited of detection of metronidazole can reach as low as 10 M, and degradation rate achieve 89 % within 120 min. The experimental and theoretical results confirm that the ZnO/Ag hollow spheres can be used in the development of ZnO heterostructure for the detection and degradation of antibiotics, which open new avenues for the development of novel ZnO-based substrate in SERS sensing and catalytic application to address environmental challenges.
空心海胆状基底在表面增强拉曼散射(SERS)和光催化领域受到广泛关注。然而,大多数已报道的研究都是简单的纳米级海胆状基底,其光捕获范围有限且制备过程复杂。本文制备了一种基于微纳分级海胆状ZnO/Ag空心球的简单有效的可控合成策略。与二维结构和实心球相比,三维海胆状ZnO/Ag空心球由于其特殊的空心结构具有更高的激光利用率和更多暴露的比表面积,这导致了优异的SERS和光催化性能,并成功实现了抗生素的检测和光降解。甲硝唑的检测限可低至10 M,120分钟内降解率达到89 %。实验和理论结果证实,ZnO/Ag空心球可用于开发用于抗生素检测和降解的ZnO异质结构,这为开发新型ZnO基基底在SERS传感和催化应用中应对环境挑战开辟了新途径。