Chen Jinmei, Lu Yudong, Xie Chunling, Xiao Xiufeng
Fujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Engineering Research Center of Industrial Biocatalysis, Fujian-Taiwan Science and Technology Cooperation Base of Biomedical Materials and Tissue Engineering, College of Chemistry and Materials Science, Fujian Normal University, Fuzhou 350007, China.
Fujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Engineering Research Center of Industrial Biocatalysis, Fujian-Taiwan Science and Technology Cooperation Base of Biomedical Materials and Tissue Engineering, College of Chemistry and Materials Science, Fujian Normal University, Fuzhou 350007, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2025 Mar 15;329:125566. doi: 10.1016/j.saa.2024.125566. Epub 2024 Dec 7.
Discarded drugs in the ecosystem pose a significant threat to human health and are a global health problem. Therefore, it is essential to establish effective detection and degradation strategies. Metal-organic framework ZIF-8 and Ag NPs were separately grown on titanium dioxide nanotube arrays (TNTs), resulting in the successful synthesis of cost-effective Ag/ZIF-8/TNTs composite substrates. These substrates were able to detect methylene blue (MB) at a low concentration of 1 × 10 M, with a surface-enhanced Raman scattering (SERS) analysis enhancement factor (AEF) of 1.4 × 10, which was higher than other similar substrates. Importantly, the device exhibited high sensitivity and accuracy for rapid detection and classification. Furthermore, this device successfully detected and classified Ibuprofen, Vancomycin, and Doxorubicin with 100 % accuracy using their SERS signatures. Additionally, the Ag/ZIF-8/TNTs substrates showed excellent photocatalytic degradation capability and could be reused without significant loss in activity after five cycles of use. The dual-functional Ag/ZIF-8/TNTs substrates were cost-effective and efficient for the detection and treatment of pollutants in wastewater.
生态系统中被丢弃的药物对人类健康构成重大威胁,是一个全球性的健康问题。因此,建立有效的检测和降解策略至关重要。金属有机框架ZIF-8和银纳米颗粒分别生长在二氧化钛纳米管阵列(TNTs)上,成功合成了具有成本效益的Ag/ZIF-8/TNTs复合基底。这些基底能够在1×10⁻⁷ M的低浓度下检测亚甲基蓝(MB),表面增强拉曼散射(SERS)分析增强因子(AEF)为1.4×10⁵,高于其他类似基底。重要的是,该设备在快速检测和分类方面表现出高灵敏度和准确性。此外,该设备利用布洛芬、万古霉素和阿霉素的SERS特征,以100%的准确率成功检测和分类了这些药物。此外,Ag/ZIF-8/TNTs基底表现出优异的光催化降解能力,在使用五个循环后可重复使用,活性无明显损失。这种双功能的Ag/ZIF-8/TNTs基底在检测和处理废水中的污染物方面具有成本效益且效率高。