Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics

The monitoring of pH is valuable for many environmental, industrial, and biological applications. Here, we develop a flexible pH sensor using CNT material using aerosol jet technology. The chemiresistive pH sensor is fabricated with a CNT-based miniaturized serpentine sensing element printed on t...

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Main Authors: Goh, Guo Liang, Yeong, Wai Yee, Agarwala, Shweta
Other Authors: School of Mechanical and Aerospace Engineering
Format: Conference or Workshop Item
Language:English
Published: 2018
Subjects:
Online Access:https://hdl.handle.net/10356/88275
http://hdl.handle.net/10220/45701
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-882752020-09-24T20:14:43Z Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics Goh, Guo Liang Yeong, Wai Yee Agarwala, Shweta School of Mechanical and Aerospace Engineering Proceedings of the 3rd International Conference on Progress in Additive Manufacturing (Pro-AM 2018) Singapore Centre for 3D Printing 3D Printing Additive Manufacturing DRNTU::Engineering::Mechanical engineering::Prototyping The monitoring of pH is valuable for many environmental, industrial, and biological applications. Here, we develop a flexible pH sensor using CNT material using aerosol jet technology. The chemiresistive pH sensor is fabricated with a CNT-based miniaturized serpentine sensing element printed on top of the silver electrodes. Aerosol jet printing parameters are optimized to achieve high resolution printing. The fabricated pH sensor shows good sensitivity and repeatability. NRF (Natl Research Foundation, S’pore) Published version 2018-08-29T01:37:57Z 2019-12-06T16:59:38Z 2018-08-29T01:37:57Z 2019-12-06T16:59:38Z 2018 Conference Paper Agarwala, S., Goh, G. L., & Yeong, W. Y. (2018). Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics. Proceedings of the 3rd International Conference on Progress in Additive Manufacturing (Pro-AM 2018), 88-94. doi:10.25341/D4Q59F https://hdl.handle.net/10356/88275 http://hdl.handle.net/10220/45701 10.25341/D4Q59F en © 2018 Nanyang Technological University. Published by Nanyang Technological University, Singapore. 7 p. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic 3D Printing
Additive Manufacturing
DRNTU::Engineering::Mechanical engineering::Prototyping
spellingShingle 3D Printing
Additive Manufacturing
DRNTU::Engineering::Mechanical engineering::Prototyping
Goh, Guo Liang
Yeong, Wai Yee
Agarwala, Shweta
Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics
description The monitoring of pH is valuable for many environmental, industrial, and biological applications. Here, we develop a flexible pH sensor using CNT material using aerosol jet technology. The chemiresistive pH sensor is fabricated with a CNT-based miniaturized serpentine sensing element printed on top of the silver electrodes. Aerosol jet printing parameters are optimized to achieve high resolution printing. The fabricated pH sensor shows good sensitivity and repeatability.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Goh, Guo Liang
Yeong, Wai Yee
Agarwala, Shweta
format Conference or Workshop Item
author Goh, Guo Liang
Yeong, Wai Yee
Agarwala, Shweta
author_sort Goh, Guo Liang
title Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics
title_short Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics
title_full Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics
title_fullStr Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics
title_full_unstemmed Aerosol jet printed pH sensor based on carbon nanotubes for flexible electronics
title_sort aerosol jet printed ph sensor based on carbon nanotubes for flexible electronics
publishDate 2018
url https://hdl.handle.net/10356/88275
http://hdl.handle.net/10220/45701
_version_ 1681059646293409792