Al-Sodies Salsabeel, Asiri Abdullah M, Alamry Khalid A, Hussein Mahmoud A
Chemistry Department, Faculty of Science, King Abdulaziz University P. O. Box 80203 Jeddah 21589 Saudi Arabia
Department of Chemistry, Faculty of Science, Taibah University Al-Madinah Al-Munawarah 30002 Saudi Arabia.
RSC Adv. 2023 Mar 24;13(14):9697-9714. doi: 10.1039/d3ra00532a. eCollection 2023 Mar 20.
Sensor applications have captivated numerous scientists in the electroactivity field lately. Between toxic target analytes and biomolecules, many articles investigated the function of the obtained products in sensing utilization and the ability of applying the gained sensor in real sample tests. Safranine and luminol have a unique polymeric constructor combined with different nanomaterials and have been explored as sensors for different analytes through electrochemical and chemical techniques. This work presents the first review of poly(safranine) and poly(luminol) in sensor applications toward assorted analytes. An illustration for the two main types of oxidative polymerization synthetic methods for our targeted compounds has been displayed including chemical and electrochemical techniques. Furthermore, a comprehensive summary for their impressive impact as electrochemical sensors in the last few decades has been additionally introduced.
近年来,传感器应用吸引了众多电活性领域的科学家。在有毒目标分析物和生物分子之间,许多文章研究了所得产物在传感应用中的功能以及将所得传感器应用于实际样品测试的能力。番红花红和鲁米诺具有与不同纳米材料结合的独特聚合物结构,并已通过电化学和化学技术作为不同分析物的传感器进行了探索。这项工作首次综述了聚(番红花红)和聚(鲁米诺)在针对各种分析物的传感器应用中的情况。展示了针对我们目标化合物的两种主要氧化聚合合成方法的示例,包括化学和电化学技术。此外,还额外介绍了它们在过去几十年中作为电化学传感器所产生的令人印象深刻的影响的全面总结。