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Fluorescent sensor array for high-precision pH classification with machine learning-supported mobile devices

delete2021-09-01
delete11
PRE
AI
H
Hyungi Kim
S
Sungmin Lee
J
Jun Min
E
Eunsu Kim *
J
Junwon Choi
J
JeongGil Ko *
E
Eunha Kim *
DOI:10.1016/j.dyepig.2021.109492delete
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Abstract

Abstract

En 中文
There is growing research interest from many scientific, healthcare, and industrial applications toward the development of high-precision optical pH sensors that cover a broad pH range. Despite enthusiastic endeavors, however, it remains challenging to develop cost-effective, high-precision, and broadband working paper-striptype optical pH measurement systems, particularly for on-site or in-the-field pH sensing applications. We develop a fluorescent array based on a KIz system for accurate pH level classification. Based on the indolizine fluorescent core skeleton, a library of 30 different pH-responsive fluorescent probes is rationally designed and efficiently synthesized. Spotting the compounds in a checkered pattern (5 x 6) allows for the development of a disposable compound array on wax-printed cellulose paper. Compounds sharing a single chemical core skeleton result in the interrogation of all the components of a system with a single excitation light, resulting in a simple system design for pH classification. Furthermore, we design a 3D-printed enclosure to capture the fluorescence pattern changes of the array by using an intelligent, smartphone-based, handheld pH detection system. Specifically, by exploiting a random forest-based machine learning algorithm on a smartphone, we can effectively analyze the fluorescence pattern changes. Our results suggest that our proposed system can classify pH levels in fine-grain (0.2 pH) units.
Keywords:
Indolizine
Fluorescent compound array
Machine learning
pH sensing
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Journal

Dyes and Pigments cover
Dyes and Pigments
IF:
4.2
Papers:
1.3W
Citations:
2.9W

Organization

A
Ajou University
Scholars:
1.1W
Papers: 1.0W
Citations: 8.9K
Y
Yonsei University
Scholars:
4.8W
Papers: 4.6W
Citations: 5.2W