Barhoum Ahmed, Alhashemi Yaser, Ahmed Yomna M, Rizk Mahmoud S, Bechelany Mikhael, Abdel-Haleem Fatehy M
NanoStruc Research Group, Chemistry Department, Faculty of Science, Helwan University, Cairo, Egypt.
Chemistry Department, Faculty of Science, Cairo University, Giza, Egypt.
Front Bioeng Biotechnol. 2024 Aug 19;12:1397587. doi: 10.3389/fbioe.2024.1397587. eCollection 2024.
In recent years, ion-selective optodes (ISOs) have remarkably progressed, driven by innovative modern designs and nanomaterial integration. This review explored the development of modern ISO by describing state-of-the-art strategies to improve their sensitivity, selectivity, and real-time monitoring capacity. The review reported the traditional membrane based-optodes, and investigated the latest research, current design principles, and the use of essential components, such as ionophores, indicator dyes, polymer membranes, and nanomaterials, in ISO fabrication. Special attention was given to nanomaterials (e.g., quantum dots, polymer dots, nanospheres, nanorods and nanocapsules) and particularly on how rare earth elements can further enhance their potential. It also described innovative ISO designs, including wearable optodes, smartphone-based optodes, and disposable paper-based optodes. As the pursuit of highly sensitive, selective, and adaptable ion sensing devices continues, this summary of the current knowledge sets the stage for upcoming innovations and applications in different domains (pharmaceutical formulations, medical diagnosis, environmental monitoring, and industrial applications).
近年来,在创新的现代设计和纳米材料集成的推动下,离子选择性光极(ISOs)取得了显著进展。本综述通过描述提高其灵敏度、选择性和实时监测能力的最新策略,探讨了现代ISO的发展。该综述报道了传统的基于膜的光极,并研究了ISO制造中最新的研究、当前的设计原则以及离子载体、指示染料、聚合物膜和纳米材料等关键组件的使用。特别关注了纳米材料(如量子点、聚合物点、纳米球、纳米棒和纳米胶囊),尤其是稀土元素如何进一步提升其潜力。它还描述了创新的ISO设计,包括可穿戴光极、基于智能手机的光极和一次性纸质光极。随着对高灵敏度、选择性和适应性强的离子传感设备的追求不断持续,这一当前知识总结为不同领域(药物制剂、医学诊断、环境监测和工业应用)即将到来的创新和应用奠定了基础。