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基于凹凸棒土和明胶的载农药纳米水凝胶,具有改善的叶面附着力。

Pesticide loaded nanohydrogel based on attapulgite and gelatin with improved foliar adhesion.

机构信息

School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing, P. R. China.

出版信息

Pest Manag Sci. 2024 Aug;80(8):3884-3892. doi: 10.1002/ps.8091. Epub 2024 Mar 29.

Abstract

BACKGROUNDS

Pesticides have been widely applied to promote plant growth due to their high insecticidal efficiency. However, most pesticides easily slip from the leaf surface due to the low foliar adhesion, leading to significant damage to the environment and human health. Increasing foliar adhesion of pesticides has been a major challenge. Nanomaterial technology, which can deliver pesticide active ingredients, offers a new opportunity to increase pesticides efficacy with higher foliar adhesion.

RESULTS

In this study, we prepared the pesticide loaded nanohydrogel ALP@Ge-g-P(AA-co-AM)/ATP by grafting attapulgite and gelatin onto P(AA-co-AM), and loading the pesticide alphacypermethrin synchronously via the emulsion solvent evaporation method. The size of the new nanohydrogel was 20.5 nm and the pesticide loading capacity was 21.5%. Compared to P(AA-co-AM), the water absorbency of Ge-g-P(AA-co-AM)/ATP increased by 54.3% in 120 min, while the water retention increased from 4.27% to 38.7% after 48 h. Washout experiments and contact angle results suggested that the nanohydrogel, with a contact angle of 44.8° indicating good wettability, can resist rain flush and increase foliar adhesion naturally.

CONCLUSIONS

Overall, the preparation of pesticide loaded nanohydrogel is simple. Experiments demonstrated the pesticide loaded nanohydrogel has high efficiency and strong foliar adhesion. This makes it a promising candidate for spraying application and reducing pollution levels. © 2024 Society of Chemical Industry.

摘要

背景

由于杀虫效率高,农药被广泛应用于促进植物生长。然而,由于叶表面附着力低,大多数农药很容易从叶表面滑落,这对环境和人类健康造成了重大损害。提高农药的叶表面附着力是一个主要挑战。纳米材料技术可以输送农药活性成分,为提高农药的功效和增加叶表面附着力提供了新的机会。

结果

本研究通过将凹凸棒土和明胶接枝到 P(AA-co-AM)上,并通过乳液溶剂蒸发法同步负载农药高效氯氰菊酯,制备了负载农药的纳米水凝胶 ALP@Ge-g-P(AA-co-AM)/ATP。新纳米水凝胶的粒径为 20.5nm,农药负载量为 21.5%。与 P(AA-co-AM)相比,Ge-g-P(AA-co-AM)/ATP 的吸水能力在 120min 内提高了 54.3%,而在 48h 后水保留率从 4.27%增加到 38.7%。洗脱实验和接触角结果表明,纳米水凝胶接触角为 44.8°,具有良好的润湿性,能抵抗雨水冲刷,自然增加叶表面附着力。

结论

总的来说,负载农药的纳米水凝胶的制备方法简单。实验表明,负载农药的纳米水凝胶具有高效和强叶表面附着力。这使其成为喷雾应用和降低污染水平的有前途的候选物。© 2024 英国化学学会。

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