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研究印楝油纳米乳液作为绿色农药在叶片表面的润湿性——优化配方、评估稳定性并提高润湿性。

Investigating the wettability of neem oil nanoemulsion as a green pesticide on leaf surfaces - optimizing formulation, assessing stability, and enhancing wettability.

作者信息

Chopra Jayita, Sahoo Priyanka, Sow Pradeep Kumar, Rangarajan Vivek

机构信息

Department of Chemical Engineering, BITS Pilani K K Birla Goa Campus Goa India

出版信息

RSC Adv. 2025 Mar 20;15(11):8645-8656. doi: 10.1039/d5ra00556f. eCollection 2025 Mar 17.

Abstract

The present study focuses on formulating a stable green oil-in-water nanoemulsion (NE) formulation for pesticide application, thereby addressing the primary challenges of botanical pesticides by improving the stability, efficacy, and wettability of leaf surfaces. Neem oil and rhamnolipid biosurfactant were utilized as the base oil and surfactant, respectively for the NE formulation. Initial screening studies with varying oil-to-surfactant ratios identified an optimal ratio of 7.13 (w/w), corresponding to 15% oil (v/v) of total emulsion volume, for a stable NE. The stability of the formulation was validated in a 25 mL volume over 20 days, maintaining a mean droplet diameter of 139.1 ± 7.34 nm and a polydispersity index of 0.207. Further stability assessments under varying time, temperature, ionic strengths, and centrifugal forces revealed a relatively stable droplet diameter ranging from 141 to 245 nm. The surface tension for the optimal formulation was measured to be 35.7 ± 0.4 mN m. Additionally, experiments with various NE formulations on selected leaves showed that NEs with higher oil content displayed faster spreading, as indicated by a rapid reduction in contact angle. The novelty of the study lies in demonstrating the synergistic interaction between oil and rhamnolipid, which facilitated faster spreading compared to the individual spreading of either component, as revealed by the dynamic spreading studies of the NE formulation on leaf surfaces. Therefore, this research paves the way for future research and development of green pesticides that are sustainable and effective compared to their chemical counterparts.

摘要

本研究的重点是为农药应用制定一种稳定的绿色水包油纳米乳液(NE)配方,从而通过提高植物源农药在叶表面的稳定性、功效和润湿性来应对其主要挑战。印楝油和鼠李糖脂生物表面活性剂分别用作NE配方的基础油和表面活性剂。通过对不同油与表面活性剂比例的初步筛选研究,确定了7.13(w/w)的最佳比例,对应于总乳液体积的15%油(v/v),以获得稳定的NE。在25 mL体积下对该配方进行了20天的稳定性验证,平均液滴直径保持在139.1±7.34 nm,多分散指数为0.207。在不同时间、温度、离子强度和离心力下的进一步稳定性评估显示,液滴直径相对稳定,范围为141至245 nm。最佳配方的表面张力测量值为35.7±0.4 mN/m。此外,在选定叶片上对各种NE配方进行的实验表明,油含量较高的NE显示出更快的铺展速度,这表现为接触角迅速减小。该研究的新颖之处在于证明了油和鼠李糖脂之间的协同相互作用,与任一成分单独铺展相比,这种相互作用促进了更快的铺展,这一点在NE配方在叶表面的动态铺展研究中得到了揭示。因此,本研究为未来开发与化学农药相比更具可持续性和有效性的绿色农药的研究和发展铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5ee/11923737/2eb9502dfcc2/d5ra00556f-f1.jpg

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