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- W4295024311 abstract "Worldwide every year around 34% of agriculture production is affected by various pests which create hurdles in our goal “food for all.” To solve this issue, large amounts of pesticides are used to control crop losses due to pests and increase agriculture production. However, pesticides are highly toxic chemicals and designed to kill pests (insect, fungi, weeds, rodents, etc.) and showed harmful effects on humans and animals when in contact. Their unwanted release in the environment through surface runoff and leaching at agriculture fields contaminated water, soil, and food. That is why pesticides residue contamination turns out to be a huge crisis for human health and environment. Hence, development of simple analytical tools to determine pesticides contamination is highly demanded. Meanwhile, available sophisticated instrumentation methods are suffering from expensive analysis, lengthy procedures, and long analysis time. Utilizing fluorescence properties of carbon dots it can be used as a selective and sensitive fluorescence sensor to detect pesticides. Also, combinations of carbon dots–based fluorescence sensor with simple spectrofluorometer enhance performance of sensor near equal to sophisticated instruments. This book chapter provides a detailed description on carbon dots–based fluorescence sensors used for the detection of pesticides. Also, here we discussed the practicality of carbon dots–based fluorescence sensors to detect trace level pesticides residues in complex sample matrices." @default.
- W4295024311 created "2022-09-09" @default.
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- W4295024311 date "2023-01-01" @default.
- W4295024311 modified "2023-10-18" @default.
- W4295024311 title "Carbon dots-based fluorescence spectrometry for pesticides sensing" @default.
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- W4295024311 doi "https://doi.org/10.1016/b978-0-323-98350-1.00020-7" @default.
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