VOC sensing using batch-fabricated temperature compensated self-leveling microstructures

被引:12
|
作者
Likhite, Rugved [1 ]
Banerjee, Aishwaryadev [1 ]
Majumder, Apratim [1 ]
Karkhanis, Mohit [1 ]
Kim, Hanseup [1 ]
Mastrangelo, Carlos H. [1 ]
机构
[1] Univ Utah, Dept Elect & Comp Engn, Salt Lake City, UT 84112 USA
来源
SENSORS AND ACTUATORS B-CHEMICAL | 2020年 / 311卷 / 311期
关键词
Capacitive sensors; Polymer swelling; Self-leveling; Volatile organic compounds; ELECTRONIC NOSE; SELECTIVE DETECTION; FORCE MICROSCOPE; SENSOR; MICROCANTILEVERS; QUALITY; SILICON; COMPOUND; LAYER;
D O I
10.1016/j.snb.2020.127817
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
We present the design, fabrication, and response of a low-power, polymer-based VOC sensor based on the selfleveling of mechanically leveraged structures. The device utilizes folded polymer-coated microcantilevers to achieve passive temperature compensation without the need for additional compensating sensors or electronics. We demonstrate that a self-leveling vapor sensor provides the same gas response as a simple microcantilever geometry, showing similar to 20 % change in device capacitance when subjected to 35-85 %RH change while showing nearly-zero baseline drift due to changes in ambient temperature when the temperature is increased from 23-72 degrees C which is similar to 52-fold better than a simple microcantilever geometry. The response of the VOC sensor was measured using three polymers (Polyimide, Polyurethane, and PDMS) against five different analytes (Ethanol, Acetone, Benzene, Hexane, and Water) and an SVM-based model was used to show target specificity. The sensor also showed an absorption response time (t90) of similar to 138 s. We propose that the self-leveling vapor sensor geometry is a significant improvement to a simple microcantilever vapor sensor as it offers the same performance but shows near-complete elimination of temperature-induced baseline drift.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Temperature-compensated refractive index sensing with high sensitivity using hybrid fiber grating
    Fan, Xiaojun
    Jiang, Junfeng
    Zhang, Xuezhi
    Liu, Kun
    Wang, Shuang
    Liu, Tiegen
    AOPC 2019: OPTICAL SENSING AND IMAGING TECHNOLOGY, 2019, 11338
  • [22] Highly sensitive infrared temperature sensor using self-heating compensated microbolometers
    Ramakrishna, MVS
    Karunasiri, G
    Neuzil, P
    Sridhar, U
    Zeng, WJ
    SENSORS AND ACTUATORS A-PHYSICAL, 2000, 79 (02) : 122 - 127
  • [23] A miniaturized soft actuator based on liquid crystal elastomer with temperature-compensated self-sensing capability
    Chi, Yun-Li
    Wang, Wei-Yi
    Yang, Yao-Joe
    SENSORS AND ACTUATORS A-PHYSICAL, 2024, 370
  • [24] Visualization supported corporate decision making for life cycle sustainability assessment-Illustrated using a case study for selecting a sustainable packaging system for self-leveling compounds
    Mueller, Daniel Philipp
    Hiete, Michael
    JOURNAL OF CLEANER PRODUCTION, 2021, 313
  • [25] Residual stress tuning in UV- LIGA fabricated microstructures using deposition temperature and reverse pulse plating
    Agrawal, Vasudha
    Mitra, Bhaskar
    JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2023, 33 (03)
  • [26] Sensing capability of molecularly imprinted self-assembled monolayer fabricated using dithiol compound
    Shin, Min Jae
    Shin, Young Jae
    Shin, Jae Sup
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2014, 20 (01) : 91 - 95
  • [27] Temperature-Compensated Refractive-Index Sensing Using a Single Bragg Grating in an Abrupt Fiber Taper
    Ran, Yang
    Jin, Long
    Sun, Li-Peng
    Li, Jie
    Guan, Bai-Ou
    IEEE PHOTONICS JOURNAL, 2013, 5 (02):
  • [28] Highly sensitive wide range linear integrated temperature compensated humidity sensors fabricated using Electrohydrodynamic printing and electrospray deposition
    Yousaf, H. M. Zeeshan
    Kim, Soo Wan
    Hassan, Gul
    Karimov, Khasan
    Choi, Kyung Hyun
    Sajid, Memoon
    SENSORS AND ACTUATORS B-CHEMICAL, 2020, 308
  • [29] Temperature Compensated Tactile Sensing Using MOSFET With P(VDF-TrFE)/BaTiO3 Capacitor as Extended Gate
    Gupta, Shoubhik
    Shakthivel, Dhayalan
    Lorenzelli, Leandro
    Dahiya, Ravinder
    IEEE SENSORS JOURNAL, 2019, 19 (02) : 435 - 442
  • [30] POLYSILICON TFTS FABRICATED AT LOW-TEMPERATURE USING ION DOPING SELF-ACTIVATION TECHNIQUE
    YOSHINOUCHI, A
    ODA, A
    ITOH, M
    MORITA, T
    TSUCHIMOTO, S
    SHARP TECHNICAL JOURNAL, 1993, (56): : 11 - 14