Literature DB >> 33804337

Cantilever-Based Sensor Utilizing a Diffractive Optical Element with High Sensitivity to Relative Humidity.

Catherine Grogan1, Faolan Radford McGovern1,2, Rory Staines1,2, George Amarandei1, Izabela Naydenova1,2.   

Abstract

High-sensitivity and simple, low-cost readout are desirable features for sensors independent of the application area. Micro-cantilever sensors use the deflection induced by the analyte presence to achieve high-sensitivity but possess complex electronic readouts. Current holographic sensors probe the analyte presence by measuring changes in their optical properties, have a simpler low-cost readout, but their sensitivity can be further improved. Here, the two working principles were combined to obtain a new hybrid sensor with enhanced sensitivity. The diffractive element, a holographically patterned thin photopolymer layer, was placed on a polymer (polydimethylsiloxane) layer forming a bi-layer macro-cantilever. The different responses of the layers to analyte presence lead to cantilever deflection. The sensitivity and detection limits were evaluated by measuring the variation in cantilever deflection and diffraction efficiency with relative humidity. It was observed that the sensitivity is tunable by controlling the spatial frequency of the photopolymer gratings and the cantilever thickness. The sensor deflection was also visible to the naked eye, making it a simple, user-friendly device. The hybrid sensor diffraction efficiency response to the target analyte had an increased sensitivity (10-fold when compared with the cantilever or holographic modes operating independently), requiring a minimum upturn in the readout complexity.

Entities:  

Keywords:  bilayer; cantilever sensor; diffractive optical sensor; holographic sensor; optical sensors

Year:  2021        PMID: 33804337     DOI: 10.3390/s21051673

Source DB:  PubMed          Journal:  Sensors (Basel)        ISSN: 1424-8220            Impact factor:   3.576


  2 in total

Review 1.  Review of Optical Humidity Sensors.

Authors:  Xing Rao; Lin Zhao; Lukui Xu; Yuhang Wang; Kuan Liu; Ying Wang; George Y Chen; Tongyu Liu; Yiping Wang
Journal:  Sensors (Basel)       Date:  2021-12-01       Impact factor: 3.576

2.  A Magnetic Nanoparticle-Doped Photopolymer for Holographic Recording.

Authors:  Muhammad Irfan; Suzanne Martin; Muhannad Ahmed Obeidi; Scott Miller; Frank Kuster; Dermot Brabazon; Izabela Naydenova
Journal:  Polymers (Basel)       Date:  2022-04-30       Impact factor: 4.967

  2 in total

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