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Colorimetric sensing approaches of surface-modified gold and silver nanoparticles for detection of residual pesticides: a review

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TAYLOR & FRANCIS LTD
DOI: 10.1080/03067319.2020.1715382

关键词

Pesticide; nanotechnology; agriculture; metal nanoparticle; surface modification

资金

  1. Department of Science and Technology, Science for Equity, Empowerment and Development Division, Government of India (DST-SEED) [SP/YO/097/2016]

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The study summarized the recent applications of surface-modified nanoparticles for the detection of residual pesticides, which are rapid, cost-effective, and suitable for on-site detection. The sensitivity and selectivity of the detection methods have been greatly improved through functionalization and modification of nanoparticles.
Extensive and erratic use of pesticides leads to bioaccumulation of pesticides in soil, food and waterbodies. Exposure to pesticides is associated with a number of serious diseases, including cancer, birth defects, pregnancy, and many other adverse health effects. Therefore, to protect human health simple and rapid methodologies for monitoring the presence of pesticides in food products are urgently required. Recently, nanoparticles-based colorimetric assays have received great attention for simple and efficient monitoring of pesticide residues. Localised surface plasmon resonance (LSPR) is an important property of metal nanoparticles displaying strong colours in the visible region of the electromagnetic spectrum, where they aggregate and display distinct linear and non-linear optical properties. A well-designed chemical interaction between the surface of nanoparticles and analytes can result in incremental optical changes (red to blue for AuNPs and bright yellow to red-brown for Ag NPs), allowing naked-eye detection of pesticides. These approaches are rapid, cost-effective and used for on-site detection. Furthermore, the sensitivity and selectivity of such assays have been greatly improved through functionalization and modification of nanoparticles. Therefore, in this study, we summarised and explained the recent applications of surface-modified nanoparticles for the detection of residual pesticides.

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