噻虫啉
棉蚜
生物安全
毒性
毒理
纳米-
蚜虫
生物
生物技术
益达胺
化学
杀虫剂
植物
有害生物分析
农学
蚜虫
蚜虫科
工程类
噻虫嗪
同翅目
有机化学
化学工程
作者
Xiaohui Yan,Yongpan Shan,Yajie Ma,Yanqin Wang,Changcai Wu,Xiangliang Ren,Xianpeng Song,Dan Wang,Hongyan Hu,Xiaoyan Ma,Yan Ma
出处
期刊:Chemosphere
[Elsevier]
日期:2024-10-21
卷期号:367: 143596-143596
标识
DOI:10.1016/j.chemosphere.2024.143596
摘要
Nanotechnology aligns with the requirements of sustainable development of agriculture, and nano-pesticides offer a promising approach to controlling agricultural pests and increasing productivity. Non-target predators also play a crucial role in pest controls and enhancing the efficacy of pesticide on target organisms. Reducing the toxicity of pesticides to non-target organisms is key to of coordinating chemical control and biological control methods. Therefore, it is essential to assess the toxicity of nano-pesticides on non-target predators. In this study, a carbon dots-doped mesoporous silica nano-delivery system (Thi@CD-MSN) was successfully developed using CD-MSN as carrier material and thiacloprid (Thi) as a model pesticide. The results demonstrated that the synthesized Thi@CD-MSN exhibited a relatively high loading efficiency (33.58%). Laboratory bioassay experiments revealed that Thi@CD-MSN demonstrated effective insecticidal activity (LC
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