Recent advances in pH sensors based on halochromic dyes

Accurate and reliable pH monitoring is crucial across diverse chemical, biological, and environmental processes. Halochromic dyes, which undergo reversible spectral changes in response to proton concentration, have emerged as powerful tools for constructing highly sensitive and versatile pH sensors. In this paper, the classification of halochromic dyes is presented, mainly including structural types, such as triarylmethane and azo dyes, along with representative fluorescent and natural dyes. The main synthesis methods of pH sensors based on halochromic dyes are also summarized, namely physical entrapment, absorption, covalent bonding, and microencapsulation, which largely determine the performance of the resulting pH sensors. The applications of these pH sensors in biomedical engineering, health monitoring, food safety, and environmental monitoring are then highlighted. Finally, the main challenges and future perspectives for the development of such sensors are discussed, providing insights into the design and application of more stable, reliable, and smart pH sensors.

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Publication Details

Journal
Textile Research Journal
Published
2026-10-08
DOI
https://doi.org/10.1177/00405175261489805
Primary Topic
Analytical Chemistry and Sensors
Type
article
Field-Weighted Citation Impact
0.00
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article

Recent advances in pH sensors based on halochromic dyes

Chuantao Gu, Bin Shan, Huanhuan Fang, Bingjin He et al.
Textile Research Journal
Analytical Chemistry and Sensors
article

Recent advances in pH sensors based on halochromic dyes

Chuantao Gu, Bin Shan, Huanhuan Fang, Bingjin He, 陈立 韩, Yong Tian, Xinyi Sun, Tingting Liu
article en

Abstract

Accurate and reliable pH monitoring is crucial across diverse chemical, biological, and environmental processes. Halochromic dyes, which undergo reversible spectral changes in response to proton concentration, have emerged as powerful tools for constructing highly sensitive and versatile pH sensors. In this paper, the classification of halochromic dyes is presented, mainly including structural types, such as triarylmethane and azo dyes, along with representative fluorescent and natural dyes. The main synthesis methods of pH sensors based on halochromic dyes are also summarized, namely physical entrapment, absorption, covalent bonding, and microencapsulation, which largely determine the performance of the resulting pH sensors. The applications of these pH sensors in biomedical engineering, health monitoring, food safety, and environmental monitoring are then highlighted. Finally, the main challenges and future perspectives for the development of such sensors are discussed, providing insights into the design and application of more stable, reliable, and smart pH sensors.

Textile Research Journal
Qingdao University of Technology (CN), Shandong University of Science and Technology (CN)
Openalex Percentile: Top 24%
Analytical Chemistry and Sensors
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