University of Strasbourg, CNRS, ISIS UMR 7006, 8 Allée Gaspard Monge, F-67000 Strasbourg, France.
Chem Soc Rev. 2021 Feb 1;50(2):1269-1304. doi: 10.1039/d0cs01112f.
Noble metal nanoparticles (NPs) are ideal scaffolds for the fabrication of sensing devices because of their high surface-to-volume ratio combined with their unique optical and electrical properties which are extremely sensitive to changes in the environment. Such characteristics guarantee high sensitivity in sensing processes. Metal NPs can be decorated with ad hoc molecular building blocks which can act as receptors of specific analytes. By pursuing this strategy, and by taking full advantage of the specificity of supramolecular recognition events, highly selective sensing devices can be fabricated. Besides, noble metal NPs can also be a pivotal element for the fabrication of chemical nose/tongue sensors to target complex mixtures of analytes. This review highlights the most enlightening strategies developed during the last decade, towards the fabrication of chemical sensors with either optical or electrical readout combining high sensitivity and selectivity, along with fast response and full reversibility, with special attention to approaches that enable efficient environmental and health monitoring.
贵金属纳米粒子(NPs)因其高的比表面积与独特的光学和电学性质而成为制造传感设备的理想支架,这些性质对环境变化极其敏感。这些特性保证了传感过程中的高灵敏度。金属 NPs 可以用特定的分子构建块进行修饰,这些构建块可以作为特定分析物的受体。通过采用这种策略,并充分利用超分子识别事件的特异性,可以制造出高选择性的传感设备。此外,贵金属 NPs 也可以成为制造化学鼻/舌传感器的关键元素,以针对复杂的分析物混合物。本文重点介绍了过去十年中发展起来的最有启发性的策略,这些策略旨在制造具有光学或电学读出功能的化学传感器,结合高灵敏度和选择性、快速响应和完全可逆性,特别关注能够实现有效环境和健康监测的方法。