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Pesticidal Activity of Nanostructured Metal Oxides for Generation of Alternative Pesticide Formulations

机译:纳米结构金属氧化物产生替代农药制剂的杀虫活性

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Herein, nanostructured metal oxides of essential soil nutrient elements (i.e., CuO and CaO) with definite shape and size were simply synthesized, and their pesticidal activities against cotton leafworm (Spodoptera littoralis) were explored for the first time. These metal oxide nanostructures represented novel economic and ecofriendly nanopesticides for sustainable plant protection and might boost the nutrient content of soil. The results showed that CuO nanoparticles (NPs) and CaO NPs exhibited potential entomotoxic effects against S. littoralis. Interestingly, CuO NPs exhibited fast entomotoxic effect with LC50 = 232.75 mg/L after 3 days, while CaO NPs showed a slow entomotoxic effect with LC50 = 129.03 mg/L after 11 days of post-treatments. The difference in the pesticidal activity of the metal oxides is related to their physical characteristics and interfacial surfaces upon insect midgut and cuticle layer of insect body wall. Thus, nanoengineered metal oxides might be utilized to generate an alternative and cost-effective pesticide formulation in the near future.
机译:这里,简单地合成了具有明确的形状和尺寸的必需土壤营养素(即CuO和CaO)的纳米结构金属氧化物,并首次探讨了对棉绒(Spodoptera Littoralis)的杀虫活动。这些金属氧化物纳米结构代表了用于可持续植物保护的新型经济和生态典型的纳米电机,并可提高土壤的营养含量。结果表明,CuO纳米颗粒(NPS)和CaO NPS对S. Littoralis表现出潜在的昆虫毒性作用。有趣的是,CuO NPS在3天后表现出与LC50 = 232.75 mg / L的快速血管毒性效果,而CAO NPS在治疗后11天后,CAO NPS与LC50 = 129.03mg / L显示出慢的昆虫毒性效果。金属氧化物的杀虫活性的差异与它们的物理特性和界面壁层昆虫体壁的阴影层有关。因此,纳米工程化金属氧化物可用于在不久的将来产生替代和经济高效的农药制剂。

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