Mehrabani Simin, Maker Ashley J, Armani Andrea M
Mork Family Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, CA 90089, USA.
Sensors (Basel). 2014 Mar 26;14(4):5890-928. doi: 10.3390/s140405890.
Label-free sensors based on electrical, mechanical and optical transduction methods have potential applications in numerous areas of society, ranging from healthcare to environmental monitoring. Initial research in the field focused on the development and optimization of various sensor platforms fabricated from a single material system, such as fiber-based optical sensors and silicon nanowire-based electrical sensors. However, more recent research efforts have explored designing sensors fabricated from multiple materials. For example, synthetic materials and/or biomaterials can also be added to the sensor to improve its response toward analytes of interest. By leveraging the properties of the different material systems, these hybrid sensing devices can have significantly improved performance over their single-material counterparts (better sensitivity, specificity, signal to noise, and/or detection limits). This review will briefly discuss some of the methods for creating these multi-material sensor platforms and the advances enabled by this design approach.
基于电、机械和光传导方法的无标记传感器在社会的众多领域都有潜在应用,从医疗保健到环境监测。该领域的初步研究集中在由单一材料系统制造的各种传感器平台的开发和优化上,例如基于光纤的光学传感器和基于硅纳米线的电传感器。然而,最近的研究工作探索了设计由多种材料制造的传感器。例如,合成材料和/或生物材料也可以添加到传感器中,以改善其对感兴趣分析物的响应。通过利用不同材料系统的特性,这些混合传感设备的性能可以比其单材料对应物有显著提高(更好的灵敏度、特异性、信噪比和/或检测限)。本综述将简要讨论创建这些多材料传感器平台的一些方法以及这种设计方法带来的进展。