School of Chemistry and Chemical Engineering, Institute for Energy Research, Key Laboratory of Zhenjiang, Jiangsu University, Zhenjiang, 212013, PR China.
School of Chemistry and Chemical Engineering, Institute for Energy Research, Key Laboratory of Zhenjiang, Jiangsu University, Zhenjiang, 212013, PR China.
Talanta. 2022 Aug 15;246:123515. doi: 10.1016/j.talanta.2022.123515. Epub 2022 May 4.
Highly sensitive detection of enrofloxacin (ENR) is crucial for contaminant detection and environmental protection. A sensitive and selective photoelectrochemical (PEC) aptasensor was assembled by Au nanoparticles sensitized BiOBr (Au/BiOBr) composites for detecting ENR. Due to the synergistic effect of bismuth-rich strategy and surface plasmon resonance (SPR) effect, Au/BiOBr possessed promoted visible light absorption capacity further enhancing PEC performance and detection sensitivity of the constructed PEC aptasensor. By chemically adsorption effect between the sulfhydryl modified aptamer and Au nanoparticles, the ENR-aptamer was introduced into the PEC sensor to achieve highly selective detection of ENR. The PEC ENR aptasensor based on Au/BiOBr composites possessed a broad linear detection scope (0.72-36000 ng L), satisfactory limit of detection (0.30 ng L, S/N = 3), high selectivity and stability. This work provides a new way for the trace detection of antibiotics in environmental analysis field.
高灵敏度检测恩诺沙星(ENR)对于污染物检测和环境保护至关重要。本研究通过 Au 纳米粒子敏化 BiOBr(Au/BiOBr)复合材料组装了一种灵敏且选择性的光电流(PEC)适体传感器,用于检测 ENR。由于富铋策略和表面等离子体共振(SPR)效应的协同作用,Au/BiOBr 具有增强的可见光吸收能力,进一步提高了构建的 PEC 适体传感器的光电性能和检测灵敏度。通过巯基修饰适体与 Au 纳米粒子之间的化学吸附作用,将 ENR-适体引入 PEC 传感器中,实现了对 ENR 的高选择性检测。基于 Au/BiOBr 复合材料的 PEC ENR 适体传感器具有较宽的线性检测范围(0.72-36000ng L)、令人满意的检测限(0.30ng L,S/N=3)、高选择性和稳定性。这项工作为环境分析领域中抗生素的痕量检测提供了一种新方法。