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Deposition and water repelling of temperature-responsive nanopesticides on leaves

Agriculture

Deposition and water repelling of temperature-responsive nanopesticides on leaves

J. Tang, X. Tong, et al.

Discover a groundbreaking nanopesticide formulation featuring tebuconazole encapsulated in innovative temperature-responsive copolymers, developed by a team of expert researchers. This study showcases enhanced leaf adhesion and reduced wash-off, outperforming traditional commercial formulations, all while significantly lowering toxicity to zebrafish.... show more
Abstract
Pesticides are widely used to increase agricultural productivity, however, weak adhesion and deposition lead to low efficient utilization. Herein, we prepare a nanopesticide formulation (tebuconazole nanopesticides) which is leaf-adhesive, and water-dispersed via a rapid nanoparticle precipitation method, flash nanoprecipitation, using temperature-responsive copolymers poly-(2-(dimethylamino)ethylmethylacrylate)-b-poly(ε-caprolactone) as the carrier. Compared with commercial suspensions, the encapsulation by the polymer improves the deposition of TEB, and the contact angle on foliage is lowered by 40.0°. Due to the small size and strong van der Waals interactions, the anti-washing efficiency of TEB NPs is increased by 37% in contrast to commercial ones. Finally, the acute toxicity of TEB NPs to zebrafish shows a more than 25-fold reduction as compared to commercial formulation indicating good biocompatibility of the nanopesticides. This work is expected to enhance pesticide droplet deposition and adhesion, maximize the use of pesticides, tackling one of the application challenges of pesticides.
Publisher
Nature Communications
Published On
Oct 12, 2023
Authors
Jie Tang, Xiaojing Tong, Yongjun Chen, Yue Wu, Zhiyuan Zheng, A. Basak Kayitmazer, Ayyaz Ahmad, Naveed Ramzan, Jintao Yang, Qingchun Huang, Yisheng Xu
Tags
nanopesticide
tebuconazole
encapsulation
flash nanoprecipitation
toxicity
wettability
adhesion
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