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通过环保型拟双子表面活性剂控制各向异性超疏水叶片表面的高速液滴飞溅和超扩展行为。

Controlling high-speed droplet splashing and superspreading behavior on anisotropic superhydrophobic leaf surfaces by ecofriendly Pseudogemini surfactants.

机构信息

Guangdong Provincial Key Laboratory of Industrial Surfactant, Institute of Chemical Engineering, Guangdong Academy of Sciences, Guangzhou, P. R. China.

出版信息

Pest Manag Sci. 2023 Sep;79(9):3090-3102. doi: 10.1002/ps.7485. Epub 2023 Apr 17.

Abstract

BACKGROUND

Efficient deposition of high-speed droplets on superhydrophobic leaf surfaces remains an important challenge. For anisotropic wired superhydrophobic leaf surfaces, the splashing phenomenon is especially serious because it leads to the low effective utilization of pesticides by biological targets. The lost pesticides cause serious ecological environment pollution, therefore there is an urgent need to develop a green and sustainable cost-effective strategy to achieve efficient deposition of high-speed droplets on anisotropic superhydrophobic leaf surfaces at low dosage.

RESULTS

One type of green pseudogemini surfactant is constructed based on fatty acids and hexamethylenediamine by electrostatic interaction to control the splashing and spreading of high-speed droplets on superhydrophobic surfaces. The formed surfactant can not only achieve complete inhibition of the bouncing of droplets, but also promote rapid spreading on superhydrophobic leaf surfaces at very low usage. The efficient deposition and superspreading phenomenon are attributed to the rapid migration and adsorption of the surfactant from the dynamic spherical micelles at the newly formed solid-liquid interface, the network-like aggregated spherical micelles, and the Marangoni effect caused by the surface tension gradient. Moreover, the surfactant shows an excellent synergistic effect with herbicides to control weeds by inhibiting droplet splashing.

CONCLUSION

This work provides a simpler, more effective and sustainable approach to utilize aggregated spherical micelles rather than conventional vesicles or wormlike micelles to improve the droplet deposition on superhydrophobic leaf surfaces and reduce the impact of surfactants and pesticides on the ecological environment. © 2023 Society of Chemical Industry.

摘要

背景

高效沉积高速液滴在超疏水叶面上仍然是一个重要的挑战。对于各向异性有线超疏水叶片表面,飞溅现象尤其严重,因为它导致生物靶标对农药的有效利用率降低。损失的农药会对生态环境造成严重的污染,因此迫切需要开发一种绿色可持续的具有成本效益的策略,以实现低剂量条件下高速液滴在各向异性超疏水叶片表面的高效沉积。

结果

通过静电相互作用,以脂肪酸和己二胺为原料构建了一种绿色拟Gemini 表面活性剂,以控制高速液滴在超疏水表面上的飞溅和铺展。形成的表面活性剂不仅可以完全抑制液滴的反弹,而且可以在非常低的用量下促进超疏水叶片表面的快速铺展。高效沉积和超扩展现象归因于表面活性剂从新形成的固-液界面处的动态球形胶束、网络状聚集球形胶束和由表面张力梯度引起的 Marangoni 效应中快速迁移和吸附。此外,该表面活性剂与除草剂表现出优异的协同作用,通过抑制液滴飞溅来控制杂草。

结论

这项工作提供了一种更简单、更有效和可持续的方法来利用聚集的球形胶束,而不是传统的囊泡或蠕虫状胶束,以提高液滴在超疏水叶片表面上的沉积,并减少表面活性剂和农药对生态环境的影响。© 2023 化学工业协会。

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