Engineering Porous Nano-Organic Silicon for Enhanced Pesticide Performance in Drone Spraying

材料科学 多孔性 聚合物 吸附 化学工程 多孔硅 杀虫剂 悬挂(拓扑) 喷雾器 润湿 聚合 肺表面活性物质 色谱法 蚀刻(微加工) 纳米技术 纳米颗粒 水溶液 悬浮聚合 比表面积 多孔介质 溶剂 无人机
作者
Wen-kui Li,Yuzhen Wu,Y. F. Peng,Jia Li,Xiaojie Gu,Peng Lei,Kang Wang,Jing Zhang,Zhiqing Ma
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:74 (15): 12023-12037
标识
DOI:10.1021/acs.jafc.6c00048
摘要

A novel porous nano-organic silicon (PNOS) polymer was synthesized through a strategy involving template-assisted polymerization and diluted acid etching by employing nano-CuO as a hard template. The porous polymer particles ranged from 50 to 150 nm and exhibited a high BET surface of 426.0 m 2 /g. Based on hydrogen-bond-supported pore adsorption confirmed by XPS analysis and molecular docking, the PNOS demonstrated 31.5% loading capacity for toosendanin (TSN). Additionally, nanoencapsulation significantly extended the duration efficacy and photostability of TSN, with the half-life of TSN increased from 2.7 to 8.6 days. After encapsulation under optimized conditions, suitable adjuvants were screened to develop a TSN nanosuspension, which exhibited desirable suspension rate, storage stability, and wetting performance. Furthermore, the nanosuspension was proved to be suitable for aerial application, with high droplet density and coverage in the crop canopy when sprayed by drones. Toxicity assays revealed that the LC 50 values of the TSN nanosuspension against Sitobion avenae and Aphis citricola were significantly lower than those of the TSN emulsifiable concentrate. Field efficacy assays through aerial spraying demonstrated that the TSN nanosuspension provided desirable control efficacy and long persistence against both aphid species. The novel PNOS had promising application potential for sustainable aerial crop protection.
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