Driving Pesticide Application Efficiency through Nanoscale Interfacial Control

文献类型: 外文期刊

第一作者: Bai, Ziyi

作者: Bai, Ziyi;Jiang, Lei;Dong, Zhichao;Bai, Ziyi;Dong, Zhichao;Fan, Yaxun;Wang, Yilin;Fan, Yaxun;Wang, Yilin;Li, Ning;Wang, Yilin;Bai, Lianyang

作者机构:

关键词: pesticide spraying; micronano structure; nanopesticide; droplet retention; leaf surface; electric fieldassistance; impact dynamics; spraying additives

期刊名称:ACS NANO ( 影响因子:16.0; 五年影响因子:16.4 )

ISSN: 1936-0851

年卷期: 2025 年 19 卷 29 期

页码:

收录情况: SCI

摘要: Pesticide spraying is a cornerstone of modern agriculture, significantly boosting the food yield per unit area. However, inefficiencies in the spraying process-due to droplet loss-result in substantial environmental pollution and economic waste. A timely review and perspective are thus greatly needed, especially to guide future research. Here, we summarize the critical factors affecting droplet retention, including leaf surface characteristics and droplet dynamics, with a focus on micronano scale solid-liquid interfacial interactions. We also summarize common spraying additives and their action mechanisms. Additionally, we highlight the role of nanopesticides in enhancing the penetration of active ingredients on leaf surfaces. The perspective concludes with an urgent call for developing more sustainable and efficient pesticide spraying systems and emphasizes the collaborative role of multiple disciplines in shaping the future of sustainable agricultural practices.

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