4.7 Article

Smartphone-assisted detection of monocrotophos pesticide using a portable nano-enabled chromagrid-lightbox system towards point-of-care application

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CHEMOSPHERE
卷 330, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2023.138704

关键词

Silica alcogel; Monocrotophos; Acetylcholinesterase (AchE); Mesoporous materials; Chromagrid

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This study investigates the use of silica alcogel as an immobilization matrix for the development of a nano-enabled chromagrid-lightbox sensing system. The system is capable of detecting monocrotophos pesticide in environmental and food samples using a smartphone. The developed system is eco-friendly and can be manufactured using recyclable waste plastic.
With the aim of monocrotophos pesticides detection in environmental and food samples at point-of-care (PoC) application, this research, for the first time, explores silica alcogel as an immobilization matrix to support the development of in-house customized nano-enabled chromagrid-lighbox as a sensing system. This system is fabri-cated using laboratory waste materials and demonstrates the detection of highly hazardous monocrotophos pesticide using a smartphone. Nano-enabled chromagrid is a chip-like assembly filled with silica alcogel-a nanomaterial (hence the name nano-enabled chromagrid), and chromogenic reagents which is required for the enzymatic detection of monocrotophos. Lightbox is the imaging station fabricated to provide constant lighting conditions to the chromagrid to capture accurate colorimetric data. The silica alcogel used in this system was synthesized from Tetraethyl ortho-silicate (TEOS) via a sol-gel method and characterized using advanced analytical techniques. Further, three chro-magrid assays were developed for the optical detection of monocrotophos with a low detection limit (LOD) at 0.421 ng ml-1 (by alpha-NAc chromagrid assay), 0.493 ng ml -1 (by DTNB chromagrid assay) and 0.811 ng ml-1 (by IDA chromagrid assay). The developed novel PoC chromagrid-lightbox system is capable of on-site detection of mono-crotophos in environmental as well as food samples. This system is able to be manufacture prudently using recyclable waste plastic. Overall, such developed eco-friendly PoC testing system will surely manage rapid detection of mon-ocrotophos pesticide needed for environmental and sustainable agricultural management.

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