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Pesticide colorimetric sensor based on silver nanoparticles modified by L-cysteine

机译:基于L-半胱氨酸修饰的银纳米颗粒的农药比色传感器

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This work investigated a new colorimetric sensor for pesticide based on L-cysteine-modified silver nanoparticles (L-cys-AgNPs). The colorimetric sensor was prepared by reducing silver nitrate solutions in the existence of Diospyros blancoi leaf infusion which were then mixed by L-cysteine solution. The L-cys-AgNPs were characterized by UV-Visible Spectrophotometer measuring optical absorbance. Pesticides, namely monosultap and cypermethrin, were detected by mixing them with silver nanoparticles. The fresh L-cys-AgNPs had brownish yellow color inasmuch as surface plasmon resonance absorbance centered at 422 nm. NaCl stimulated color change from brownish yellow to clear which was relied on pesticide concentration of 20, 50 and 100 ppm. In the presence of cypermethrin, L-cys-AgNPs color turned clear and the peak absorbance dropped to 0.17 from 1.15. However, the effect of monosultap toward L-cys-AgNPs was negligible. This sensor allows a direct quantitative check for the detection of cypermethrin.
机译:这项工作研究了一种基于L-半胱氨酸修饰的银纳米颗粒(L-cys-AgNPs)的新型农药比色传感器。比色传感器的制备方法是:在存在Diospyros blancoi叶浸液的情况下,通过还原硝酸银溶液来制备比色传感器,然后将其与L-半胱氨酸溶液混合。 L-cys-AgNPs通过紫外可见分光光度计测量吸光度来表征。通过将农药与单银杀虫剂和氯氰菊酯与银纳米颗粒混合,可以检测出它们。新鲜的L-cys-AgNPs具有棕黄色,这是因为表面等离振子共振吸收集中在422nm。 NaCl刺激颜色由棕黄色变为透明,这取决于农药浓度为20、50和100 ppm。在氯氰菊酯存在下,L-cys-AgNPs的颜色变清晰,峰吸收从1.15降至0.17。但是,monosultap对L-cys-AgNPs的影响可忽略不计。该传感器可以直接定量检查氯氰菊酯的含量。

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