Engineered biodegradable nanopesticides for efficient leaf deposition and plant fungicides

Author:

Tong Xiaojing1,Tang Jie1,Wang Jia1,Wu Yue1,Zheng Zhiyuan1,Yuan Chen1,Kayitmazer A. Basak2,Ahmad Ayyaz3,Ramzan Naveed4,Yang Jintao5,Huang Qingchun6,Xu Yisheng1ORCID

Affiliation:

1. Laboratory of Chemical Engineering East China University of Science and Technology Shanghai China

2. Department of Chemistry Bogazici University Bebek Istanbul Turkey

3. Department of Chemical Engineering Muhammad Nawaz Sharif University of Engineering and Technology Multan Pakistan

4. Faculty of Chemical, Metallurgical, and Polymer Engineering University of Engineering & Technology Lahore Pakistan

5. College of Materials Science & Engineering Zhejiang University of Technology Hangzhou China

6. Shanghai Key Lab of Chemical Biology, School of Pharmacy East China University of Science and Technology Shanghai China

Abstract

AbstractPesticides are indispensable in agricultural development, but their effectiveness is often hindered by natural factors like rain‐off and degradation. Herein, tebuconazole nanopesticides (TEB NPs) with leaf‐adhesive, water‐stable, and small‐sized were successfully prepared by flash nanoprecipitation using the biodegradable polyethylene glycol‐b‐poly (lactic‐co‐glycolic acid) as a carrier. The nanopesticides could be efficiently deposited on plant leaves with uniform distribution and exhibited a 14° lower contact angle with foliage compared to commercial suspensions. The encapsulation of TEB within the polymer enhanced its resistance to photolysis, resulting in a 5‐h extension of its half‐life. TEB NPs were readily taken up by fungi and plants, thereby enhancing fungicidal efficacy. This nanopesticide could achieve the desired antifungal effect with reduced dosage and improved pesticide utilization. Therefore, the work is expected to provide a simple nanoplatform for improving pesticide utilization and promoting green agriculture.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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