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多糖作为基于金属离子检测的光学传感器应用中的传感材料。

Polysaccharides as the Sensing Material for Metal Ion Detection-Based Optical Sensor Applications.

机构信息

Photonics Technology Laboratory, Department of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, UKM Bangi 43600, Selangor, Malaysia.

出版信息

Sensors (Basel). 2020 Jul 15;20(14):3924. doi: 10.3390/s20143924.

Abstract

The incorporation of a proper sensing material towards the construction of high selectivity optical sensing devices is vital. Polysaccharides, such as chitosan and carrageenan, are among the bio-based sensing materials that are extensively employed due to their remarkable physicochemical attributes. This paper highlights the critical aspects of the design of suitable polysaccharides for the recognition of specific analytes through physical and chemical modifications of polysaccharide structure. Such modifications lead to the enhancement of physicochemical properties of polysaccharides and optical sensor performance. Chitosan and carrageenan are two materials that possess excellent features which are capable of sensing target analytes via various interactions. The interaction between polysaccharides and analytes is dependent on the availability of functional groups in their structure. The integration of polysaccharides with various optical sensing techniques further improves optical sensor performance. The application of polysaccharides as sensing materials in various optical sensing techniques is also highlighted, particularly for metal ion sensing.

摘要

将合适的传感材料纳入到高选择性光学传感设备的构建中至关重要。多糖,如壳聚糖和卡拉胶,是广泛应用的基于生物的传感材料之一,这是由于它们具有显著的物理化学特性。本文重点介绍了通过多糖结构的物理和化学修饰来设计合适的多糖以识别特定分析物的关键方面。这些修饰导致多糖和光学传感器性能的物理化学性质得到增强。壳聚糖和卡拉胶是两种具有优异特性的材料,能够通过各种相互作用来感测目标分析物。多糖与分析物之间的相互作用取决于其结构中功能基团的可用性。将多糖与各种光学传感技术相结合,进一步提高了光学传感器的性能。本文还强调了多糖作为传感材料在各种光学传感技术中的应用,特别是在金属离子感测方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2390/7412221/eaa8b9fd3f13/sensors-20-03924-g001.jpg

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