Cargando…

A Highly Sensitive Humidity Sensor Based on Ultrahigh-Frequency Microelectromechanical Resonator Coated with Nano-Assembled Polyelectrolyte Thin Films

We developed a highly sensitive humidity sensor based on the combination of ultrahigh-frequency film bulk acoustic resonator (FBAR) and nano-assembled polyelectrolyte (PET) thin films. The water molecule absorption efficiency was optimized by forming loosely-packed PET nanostructures. Then, the humi...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Wenpeng, Qu, Hemi, Hu, Jizhou, Pang, Wei, Zhang, Hao, Duan, Xuexin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6189836/
http://dx.doi.org/10.3390/mi8040116
_version_ 1783363442709626880
author Liu, Wenpeng
Qu, Hemi
Hu, Jizhou
Pang, Wei
Zhang, Hao
Duan, Xuexin
author_facet Liu, Wenpeng
Qu, Hemi
Hu, Jizhou
Pang, Wei
Zhang, Hao
Duan, Xuexin
author_sort Liu, Wenpeng
collection PubMed
description We developed a highly sensitive humidity sensor based on the combination of ultrahigh-frequency film bulk acoustic resonator (FBAR) and nano-assembled polyelectrolyte (PET) thin films. The water molecule absorption efficiency was optimized by forming loosely-packed PET nanostructures. Then, the humidity sensing characteristics were analyzed in terms of sensitivity, linearity, reversibility, stability and detection limit. As a result, PET-coated FBAR exhibits excellent humidity sensitivity of 2202.20 Hz/ppm, which is five orders of magnitude higher than quartz crystal microbalance (QCM). Additionally, temperature dependence was investigated with the result that PET-coated FBAR possessed a higher sensitivity at low temperature. Furthermore, we realized the selective detection of water vapor from volatile organic compounds (VOCs) with respect to the polarity property. Owing to the high sensitivity, miniaturized size and ultrahigh operating frequency, PET-coated FBAR is uniquely favorable as a wireless humidity sensor node to integrate into wireless sensor networks (WSNs).
format Online
Article
Text
id pubmed-6189836
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-61898362018-11-01 A Highly Sensitive Humidity Sensor Based on Ultrahigh-Frequency Microelectromechanical Resonator Coated with Nano-Assembled Polyelectrolyte Thin Films Liu, Wenpeng Qu, Hemi Hu, Jizhou Pang, Wei Zhang, Hao Duan, Xuexin Micromachines (Basel) Article We developed a highly sensitive humidity sensor based on the combination of ultrahigh-frequency film bulk acoustic resonator (FBAR) and nano-assembled polyelectrolyte (PET) thin films. The water molecule absorption efficiency was optimized by forming loosely-packed PET nanostructures. Then, the humidity sensing characteristics were analyzed in terms of sensitivity, linearity, reversibility, stability and detection limit. As a result, PET-coated FBAR exhibits excellent humidity sensitivity of 2202.20 Hz/ppm, which is five orders of magnitude higher than quartz crystal microbalance (QCM). Additionally, temperature dependence was investigated with the result that PET-coated FBAR possessed a higher sensitivity at low temperature. Furthermore, we realized the selective detection of water vapor from volatile organic compounds (VOCs) with respect to the polarity property. Owing to the high sensitivity, miniaturized size and ultrahigh operating frequency, PET-coated FBAR is uniquely favorable as a wireless humidity sensor node to integrate into wireless sensor networks (WSNs). MDPI 2017-04-05 /pmc/articles/PMC6189836/ http://dx.doi.org/10.3390/mi8040116 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Wenpeng
Qu, Hemi
Hu, Jizhou
Pang, Wei
Zhang, Hao
Duan, Xuexin
A Highly Sensitive Humidity Sensor Based on Ultrahigh-Frequency Microelectromechanical Resonator Coated with Nano-Assembled Polyelectrolyte Thin Films
title A Highly Sensitive Humidity Sensor Based on Ultrahigh-Frequency Microelectromechanical Resonator Coated with Nano-Assembled Polyelectrolyte Thin Films
title_full A Highly Sensitive Humidity Sensor Based on Ultrahigh-Frequency Microelectromechanical Resonator Coated with Nano-Assembled Polyelectrolyte Thin Films
title_fullStr A Highly Sensitive Humidity Sensor Based on Ultrahigh-Frequency Microelectromechanical Resonator Coated with Nano-Assembled Polyelectrolyte Thin Films
title_full_unstemmed A Highly Sensitive Humidity Sensor Based on Ultrahigh-Frequency Microelectromechanical Resonator Coated with Nano-Assembled Polyelectrolyte Thin Films
title_short A Highly Sensitive Humidity Sensor Based on Ultrahigh-Frequency Microelectromechanical Resonator Coated with Nano-Assembled Polyelectrolyte Thin Films
title_sort highly sensitive humidity sensor based on ultrahigh-frequency microelectromechanical resonator coated with nano-assembled polyelectrolyte thin films
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6189836/
http://dx.doi.org/10.3390/mi8040116
work_keys_str_mv AT liuwenpeng ahighlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT quhemi ahighlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT hujizhou ahighlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT pangwei ahighlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT zhanghao ahighlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT duanxuexin ahighlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT liuwenpeng highlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT quhemi highlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT hujizhou highlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT pangwei highlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT zhanghao highlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms
AT duanxuexin highlysensitivehumiditysensorbasedonultrahighfrequencymicroelectromechanicalresonatorcoatedwithnanoassembledpolyelectrolytethinfilms