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逐层纳米组装:光纤传感应用的强大工具。

Layer-by-Layer Nano-assembly: A Powerful Tool for Optical Fiber Sensing Applications.

机构信息

Materials Engineering Laboratory, Department of Engineering, Public University of Navarre, Campus Arrosadía S/N, 31006 Pamplona, Spain.

Institute for Advanced Materials (INAMAT), Public University of Navarre, Campus Arrosadía S/N, 31006 Pamplona, Spain.

出版信息

Sensors (Basel). 2019 Feb 7;19(3):683. doi: 10.3390/s19030683.

Abstract

The ability to tune the composition of nanostructured thin films is a hot topic for the design of functional coatings with advanced properties for sensing applications. The control of the structure at the nanoscale level enables an improvement of intrinsic properties (optical, chemical or physical) in comparison with the traditional bulk materials. In this sense, among all the known nanofabrication techniques, the layer-by-layer (LbL) nano-assembly method is a flexible, easily-scalable and versatile approach which makes possible precise control of the coating thickness, composition and structure. The development of sensitive nanocoatings has shown an exceptional growth in optical fiber sensing applications due to their self-assembling ability with oppositely charged components in order to obtain a multilayer structure. This nanoassembly technique is a powerful tool for the incorporation of a wide variety of species (polyelectrolytes, metal/metal oxide nanoparticles, hybrid particles, luminescent materials, dyes or biomolecules) in the resultant multilayer structure for the design of high-performance optical fiber sensors. In this work we present a review of applications related to optical fiber sensors based on advanced LbL coatings in two related research areas of great interest for the scientific community, namely chemical sensing (pH, gases and volatile organic compounds detection) as well as biological/biochemical sensing (proteins, immunoglobulins, antibodies or DNA detection).

摘要

调控纳米结构薄膜组成的能力是设计具有先进传感应用性能的功能涂层的热门课题。与传统的体材料相比,纳米尺度结构的控制可以改善固有性质(光学、化学或物理性质)。在这方面,在所有已知的纳米制造技术中,层层(LbL)纳米组装方法是一种灵活、易于扩展和通用的方法,可以精确控制涂层的厚度、组成和结构。由于敏感纳米涂层具有自组装能力,可以与带相反电荷的组分结合以获得多层结构,因此在光纤传感应用中显示出了非凡的增长。这种纳米组装技术是将多种物质(聚电解质、金属/金属氧化物纳米粒子、混合粒子、发光材料、染料或生物分子)纳入所得多层结构以设计高性能光纤传感器的有力工具。在这项工作中,我们回顾了基于先进 LbL 涂层的光纤传感器在两个相关研究领域中的应用,这两个领域对科学界具有很大的兴趣,即化学传感(pH 值、气体和挥发性有机化合物检测)以及生物/生化传感(蛋白质、免疫球蛋白、抗体或 DNA 检测)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0981/6387403/2aa0dc27c009/sensors-19-00683-g001.jpg

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