AI Article Synopsis

  • - The text highlights the growing need for accurate detection of various substances like heavy metals and pesticides in clinical, environmental, and food safety applications, and discusses advancements in portable colorimetric chemical sensing devices.
  • - It reviews different types of colorimetry technologies including handheld, RGB-based, paper-based, and wearable devices, focusing on their principles, materials used like noble metal nanoparticles, and their practical applications.
  • - Notably, noble metal nanoparticles enhance sensitivity and selectivity in these sensing devices, and their integration with smartphones allows for easy, cost-effective, and real-time analysis, revolutionizing monitoring capabilities.

Article Abstract

The need for precise determination of heavy metals, anions, biomolecules, pesticides, drugs, and other substances is vital across clinical, environmental, and food safety domains. Recent years have seen significant progress in portable colorimetric chemical sensing devices, revolutionizing on-the-spot analysis. This review offers a comprehensive overview of these advancements, covering handheld colorimetry, RGB-based colorimetry, paper-based colorimetry, and wearable colorimetry devices. It explores the underlying principles, functional materials (chromophoric reagents/dyes and nanoparticles), detection mechanisms, and their applications in environmental monitoring, clinical care, and food safety. Noble metal nanoparticles (NPs) have arisen as promising substitutes in the realm of sensing materials. They display notable advantages, including heightened sensitivity, the ability to fine-tune their plasmonic characteristics for improved selectivity, and the capacity to induce visible color changes, and simplifying detection. Integration of NPs fabricated paper device with smartphones and wearables facilitates reagent-free, cost-effective, and portable colorimetric sensing, enabling real-time analysis and remote monitoring.

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Source
http://dx.doi.org/10.1039/d3nr03803cDOI Listing

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