可湿性粉末
金属有机骨架
环糊精
化学
控制释放
杀虫剂
纳米技术
材料科学
有机化学
生物
农学
吸附
乳状液
作者
Huiping Chen,Yongpan Shan,Chunli Xu,Muhammad Bilal,Pengyue Zhao,Chong Cao,Zhang Hong-jun,Qiliang Huang,Lidong Cao
出处
期刊:ACS agricultural science & technology
[American Chemical Society]
日期:2023-01-13
卷期号:3 (2): 190-202
被引量:19
标识
DOI:10.1021/acsagscitech.2c00295
摘要
A controlled pesticide delivery system has attracted considerable attention in recent years. Metal–organic frameworks (MOFs), which are one of the most rapidly developing porous materials, have been used as pesticide carriers. However, the inherent toxicity of reported metal nodes or the expensiveness of organic ligands is not desirable, which limits the practical application of such pesticide-loaded MOF delivery systems. γ-Cyclodextrin-based MOFs (γ-CD–MOFs) are considered as a green renewable framework material; however, it has been less exploited as a multifunctional pesticide carrier in agricultural applications. In this study, avermectins (AVM) were loaded into γ-CD–MOFs (AVM−γ-CD–MOFs) with a loading content of 20.41% by physical absorption. AVM−γ-CD–MOFs exhibited pH-responsive release profiles and had better stability under photoirradiation. Moreover, it could promote the growth of cotton roots and stems, improve the chlorophyll content, and decrease malondialdehyde content to a certain extent by facilitating the activities of peroxidase. Compared with AVM technical concentrate wettable powder, the AVM−γ-CD–MOF wettable powder exhibited a better acaricidal activity against Panonychus citri (McGregor). In short, this research explores the feasibility of γ-CD–MOFs as a platform for potential application in sustainable plant protection.
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