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基于 Fe-鞣酸网络的简便、智能、可降解金属有机框架纳米农药,可响应七种生物和环境刺激。

Facile, Smart, and Degradable Metal-Organic Framework Nanopesticides Gated with Fe-Tannic Acid Networks in Response to Seven Biological and Environmental Stimuli.

机构信息

Key Laboratory of Mesoscopic Chemistry (Ministry of Education), State Key Laboratory of Coordination Chemistry, and School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, People's Republic of China.

School of Horticulture and Plant Protection, Yangzhou University, Yangzhou 225009, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 28;13(16):19507-19520. doi: 10.1021/acsami.1c04118. Epub 2021 Apr 15.

Abstract

Nanopesticides were selected as one of the top 10 emerging technologies in chemistry that will change our world in 2019. Facile, smart, and degradable metal-organic framework MIL-101(Fe) nanopesticides gated with Fe-tannic acid (TA) networks are created using a universal strategy. The capping of the Fe-TA network gatekeepers is instinctively oriented by the coordinatively unsaturated Fe sites on the surfaces of the MIL-101(Fe) nanocarriers; thus, their combination is perfectly matched. This is the first example that one smart gated nanoparticle is integrated with seven stimuli-responsive performances to meet the diverse controlled release of encapsulated cargos by the disassembly of the gatekeepers and/or the degradation of the nanocarriers. More importantly, each of the seven stimuli (acidic/alkaline pH, HO, glutathione, phosphates, ethylenediaminetetraacetate, and near-infrared light of sunlight) is closely related to the biological and natural environments of crops, and the biocompatible nanocarriers are eventually degraded against bioaccumulation even if the nanopesticides enter crops. These mechanisms of the stimuli-responsive controlled release are identified and clearly elaborated. It is found that the natural polyphenol can improve the wettability of aqueous droplets of nanopesticides on model hydrophobic foliage for pesticide adhesion and retention. The nanopesticides encapsulated with the fungicide tebuconazole show high fungicidal activities against pathogenic fungi (rice sheath blight) and (wheat head blight); good safety on seed germination, seedling emergence, and plant height of wheat by seed dressing; and satisfactory control efficacy in wheat powdery mildew caused by in the greenhouse. The nanopesticides have potential applications in the field for high quality and yield of agricultural production.

摘要

纳米农药被选为 2019 年将改变世界的十大化学新兴技术之一。采用通用策略,创建了具有 Fe-鞣酸 (TA) 网络的简便、智能且可降解的金属有机骨架 MIL-101(Fe)纳米农药。Fe-TA 网络门控剂的封盖本能地由 MIL-101(Fe)纳米载体表面的配位不饱和 Fe 位定向;因此,它们的组合完美匹配。这是第一个实例,一个智能门控纳米颗粒与七种刺激响应性能集成在一起,通过门控剂的拆卸和/或纳米载体的降解来满足封装货物的多样化控制释放。更重要的是,这七种刺激(酸性/碱性 pH 值、HO、谷胱甘肽、磷酸盐、乙二胺四乙酸和阳光近红外光)中的每一种都与作物的生物和自然环境密切相关,并且最终生物相容的纳米载体会降解以防止生物积累,即使纳米农药进入作物也是如此。这些刺激响应控制释放的机制被识别并得到了清晰的阐述。结果发现,天然多酚可以改善纳米农药在疏水叶面模型上的水滴滴的润湿性,以增强农药附着和保留。用杀菌剂戊唑醇封装的纳米农药对病原菌(稻纹枯病)和(小麦赤霉病)具有很高的杀菌活性;通过种子包衣对小麦种子发芽、幼苗出土和株高具有良好的安全性;在温室中对小麦白粉病(由引起)具有令人满意的防治效果。纳米农药在农业生产中具有提高农产品质量和产量的潜在应用。

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