Swami Suman, Sharma Neelam, Saini Ajay
Department of Chemistry, Chandigarh University NH-05, Ludhiana - Chandigarh State Hwy Mohali Punjab 140413 India
Department of Chemistry, Manipal University Jaipur Jaipur-Ajmer Express Highway, Dehmi Kalan, Near GVK Toll Plaza Jaipur Rajasthan 303007 India.
RSC Adv. 2024 Jun 12;14(27):18907-18941. doi: 10.1039/d4ra02787f.
Mercury, a widespread highly toxic environmental pollutant, poses significant risks to both human health and ecosystems. It commonly infiltrates the food chain, particularly through fish, and water resources multiple pathways, leading to adverse impacts on human health and the environment. To monitor and keep track of mercury ion levels various methods traditionally have been employed. However, conventional detection techniques are often hindered by limitations. In response to challenges, nano-sensors, capitalizing on the distinctive properties of nanomaterials, emerge as a promising solution. This comprehensive review provides insight into the extensive spectrum of nano-sensor development for mercury detection. It encompasses various types of nanomaterials such as silver, gold, silica, magnetic, quantum dot, carbon dot, and electrochemical variants, elucidating their sensing mechanisms and fabrication. The aim of this review is to offer an in-depth exploration to researchers, technologists, and the scientific community, and understanding of the evolving landscape in nano-sensor development for mercury sensing. Ultimately, this review aims to encourage innovation in the pursuit of efficient and reliable solutions for mercury detection, thereby contributing to advancements in environmental protection and public health.
汞是一种广泛存在的高毒性环境污染物,对人类健康和生态系统都构成重大风险。它通常通过多种途径渗入食物链,尤其是通过鱼类和水资源,对人类健康和环境产生不利影响。为了监测和跟踪汞离子水平,传统上采用了各种方法。然而,传统的检测技术往往受到限制。针对这些挑战,利用纳米材料独特性能的纳米传感器成为一种有前途的解决方案。这篇综述全面介绍了用于汞检测的纳米传感器的广泛发展情况。它涵盖了各种类型的纳米材料,如银、金、二氧化硅、磁性、量子点、碳点以及电化学变体,阐明了它们的传感机制和制备方法。这篇综述的目的是为研究人员、技术专家和科学界提供深入的探索,增进对用于汞传感的纳米传感器发展演变情况的理解。最终,这篇综述旨在鼓励创新,以寻求高效可靠的汞检测解决方案,从而推动环境保护和公共卫生的进步。