De Acha Nerea, Elosua Cesar, Matias Ignacio, Arregui Francisco Javier
Department of Electric and Electronic Engineering, Public University of Navarra, E-31006 Pamplona, Spain.
Institute of Smart Cities (ISC), Public University of Navarra, E-31006 Pamplona, Spain.
Sensors (Basel). 2017 Dec 6;17(12):2826. doi: 10.3390/s17122826.
Luminescence-based sensing applications range from agriculture to biology, including medicine and environmental care, which indicates the importance of this technique as a detection tool. Luminescent optical sensors are required to be highly stable, sensitive, and selective, three crucial features that can be achieved by fabricating them by means of the layer-by-layer nano-assembly technique. This method permits us to tailor the sensors' properties at the nanometer scale, avoiding luminophore aggregation and, hence, self-quenching, promoting the diffusion of the target analytes, and building a barrier against the undesired molecules. These characteristics give rise to the fabrication of custom-made sensors for each particular application.
基于发光的传感应用涵盖从农业到生物学的各个领域,包括医学和环境保护,这表明该技术作为一种检测工具的重要性。发光光学传感器需要具备高稳定性、高灵敏度和高选择性,通过逐层纳米组装技术制造传感器可以实现这三个关键特性。这种方法使我们能够在纳米尺度上定制传感器的特性,避免发光团聚集从而避免自猝灭,促进目标分析物的扩散,并构建一道抵御不需要分子的屏障。这些特性使得能够为每个特定应用制造定制传感器。