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Stretchable broadband photo-sensor sheets for nonsampling, source-free, and label-free chemical monitoring by simple deformable wrapping

Authors :
Kou Li
Teppei Araki
Ryogo Utaki
Yu Tokumoto
Meiling Sun
Satsuki Yasui
Naoko Kurihira
Yuko Kasai
Daichi Suzuki
Ruben Marteijn
Jaap M.J. den Toonder
Tsuyoshi Sekitani
Yukio Kawano
Mechanical Engineering
Microsystems
Group Den Toonder
Institute for Complex Molecular Systems
ICMS Core
Source :
Science Advances, 8(19):eabm4349. American Association for the Advancement of Science (AAAS)
Publication Year :
2022
Publisher :
American Association for the Advancement of Science (AAAS), 2022.

Abstract

Chemical monitoring communicates diverse environmental information from industrial and biological processes. However, promising and sustainable systems and associated inspection devices that dynamically enable on-site quality monitoring of target chemicals confined inside transformable and opaque channels are yet to be investigated. This paper designs stretchable photo-sensor patch sheets for nonsampling, source-free, and label-free on-site dynamic chemical monitoring of liquids flowing inside soft tubes via simple deformable surface wrapping. The device integrates carbon nanotube–based broadband photo-absorbent thin films with multilayer-laminated stretchable electrodes and substrates. The patterned rigid-soft structure of the proposed device provides durability and optical stability against mechanical deformations with a stretchability range of 70 to 280%, enabling shape-conformable attachments to transformable objects. The effective use of omnidirectional and transparent blackbody radiation from free-form targets themselves allows compact measurement configuration and enhances the functionality and simplicity of this scheme, while the presenting technology monitors concentrations of arbitrary water-soluble chemicals.

Subjects

Subjects :
Multidisciplinary

Details

Language :
English
ISSN :
23752548
Volume :
8
Issue :
19
Database :
OpenAIRE
Journal :
Science Advances
Accession number :
edsair.doi.dedup.....e60ad88c0cc57fa46bb6f4c76f406b93