Kumari Neha, Singh Shalini, Baral Minati, Kanungo B K
National Institute of Technology, Kurukshetra, Haryana-136119, India.
Sant Longowal Institute of Engineering and Technology, Longowal, Sangrur, Punjab-148106, India.
J Fluoresc. 2023 May;33(3):859-893. doi: 10.1007/s10895-022-03135-6. Epub 2023 Jan 12.
Metal cations such as Zn, Al, Hg, Cd, Sn, Fe, Fe and Cu play important roles in biology, medicine, and the environment. However, when these are not maintained in proper concentration, they can be lethal to life. Therefore, selective sensing of metal cations is of great importance in understanding various metabolic processes, disease diagnosis, checking the purity of environmental samples, and detecting toxic analytes. Schiff base probes have been largely used in designing fluorescent sensors for sensing metal ions because of their easy processing, availability, fast response time, and low detection limit. Herein, an in-depth report on metal ions recognition by some Schiff base fluorescent sensors, their sensing mechanism, their practical applicability in cell imaging, building logic gates, and analysis of real-life samples has been presented. The metal ions having biological, industrial, and environmental significance are targeted. The compiled information is expected to prove beneficial in designing and synthesis of the related Schiff base fluorescent sensors.
锌、铝、汞、镉、锡、铁、亚铁和铜等金属阳离子在生物学、医学和环境中发挥着重要作用。然而,当这些金属阳离子的浓度未得到适当维持时,它们可能对生命造成致命影响。因此,选择性传感金属阳离子对于理解各种代谢过程、疾病诊断、检查环境样品的纯度以及检测有毒分析物具有重要意义。由于席夫碱探针易于加工、可得、响应时间快且检测限低,因此在设计用于传感金属离子的荧光传感器方面得到了广泛应用。本文深入报道了一些席夫碱荧光传感器对金属离子的识别、它们的传感机制、在细胞成像、构建逻辑门以及实际样品分析中的实际应用。具有生物学、工业和环境意义的金属离子是目标对象。预计所汇编的信息将有助于相关席夫碱荧光传感器的设计和合成。