Dodevska Totka
University of Food Technologies.
Acta Chim Slov. 2025 May 22;72(2):217-237. doi: 10.17344/acsi.2024.8918.
Modern nanofabrication technologies combined with electrochemical techniques offer benefits in terms of extremely high sensitivity, low limit of detection, minimum power requirement, simplicity, and low cost of the electrochemical sensors making them powerful for food quality evaluation. The limited number of electrochemical non-enzymatic sensing platforms for bisphenol A (BPA) successfully applied for safety assessment of foods and beverages, testifies that the food matrices present significant challenges and there is still a need to improve the analytical performances of these devices. This review systematically explores the contributions of diverse functional nanomaterials, metal-organic frameworks, ionic liquids, and molecular imprinting in improving the sensor performance. A critical discussion on the latest interesting innovations and most promising electrochemical tools for BPA analysis is presented. By addressing the electrochemical aspects and challenges in the design of BPA sensors and exploring innovative solutions, the article offers insights into future prospects and avenues, paving the way for advancements in this field.
现代纳米制造技术与电化学技术相结合,在极高灵敏度、低检测限、最低功率要求、简单性以及低成本等方面为电化学传感器带来了优势,使其在食品质量评估中具有强大作用。用于双酚A(BPA)的电化学非酶传感平台数量有限,成功应用于食品和饮料安全评估,这证明食品基质带来了重大挑战,仍需提高这些设备的分析性能。本综述系统地探讨了各种功能纳米材料、金属有机框架、离子液体和分子印迹在改善传感器性能方面的贡献。对用于BPA分析的最新有趣创新和最有前景的电化学工具进行了批判性讨论。通过阐述BPA传感器设计中的电化学方面和挑战,并探索创新解决方案,本文提供了对未来前景和途径的见解,为该领域的进步铺平了道路。