School of Physics, Clinical & Optometric Sciences, Technological University Dublin, D07 ADY7 Dublin, Ireland.
Centre for Industrial & Engineering Optics, Technological University Dublin, D07 ADY7 Dublin, Ireland.
Sensors (Basel). 2023 Jun 19;23(12):5711. doi: 10.3390/s23125711.
The term optomechanical sensors describes devices based on coupling the optical and mechanical sensing principles. The presence of a target analyte leads to a mechanical change, which, in turn, determines an alteration in the light propagation. Having higher sensitivity in comparison with the individual technologies upon which they are based, the optomechanical devices are used in biosensing, humidity, temperature, and gases detection. This perspective focuses on a particular class, namely on devices based on diffractive optical structures (DOS). Many configurations have been developed, including cantilever- and MEMS-type devices, fiber Bragg grating sensors, and cavity optomechanical sensing devices. These state-of-the-art sensors operate on the principle of a mechanical transducer coupled with a diffractive element resulting in a variation in the intensity or wavelength of the diffracted light in the presence of the target analyte. Therefore, as DOS can further enhance the sensitivity and selectivity, we present the individual mechanical and optical transducing methods and demonstrate how the DOS introduction can lead to an enhanced sensitivity and selectivity. Their (low-) cost manufacturing and their integration in new sensing platforms with great adaptability across many sensing areas are discussed, being foreseen that their implementation on wider application areas will further increase.
术语“光机传感器”描述了基于耦合光学和机械传感原理的设备。目标分析物的存在会导致机械变化,而机械变化又会决定光的传播方式发生改变。与它们所基于的个别技术相比,光机设备具有更高的灵敏度,因此被用于生物传感、湿度、温度和气体检测。本观点侧重于特定的一类,即基于衍射光学结构 (DOS) 的设备。已经开发出许多配置,包括悬臂梁和 MEMS 型设备、光纤布拉格光栅传感器和腔光机械传感设备。这些最先进的传感器基于机械换能器与衍射元件耦合的原理工作,在存在目标分析物的情况下,衍射光的强度或波长会发生变化。因此,由于 DOS 可以进一步提高灵敏度和选择性,我们介绍了单个机械和光学转换方法,并演示了 DOS 的引入如何提高灵敏度和选择性。讨论了它们的(低成本)制造以及在具有许多传感领域良好适应性的新传感平台中的集成,预计它们在更广泛的应用领域中的实施将进一步增加。