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Rational Ligand Design To Improve Agrochemical Delivery Efficiency and Advance Agriculture Sustainability

机译:理性配体设计,提高农业化学递送效率和推进农业可持续性

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The use of agrochemicals-fertilizers and pesticides-in crop production is inefficient, resulting in cascading adverse impacts on the environment and public health. Engineered nanomaterials have the potential to offer innovative solutions for effective, precise, and timed delivery of active ingredients to crops, yielding increased production and preventing overapplication. While promising, there remains an opportunity to realize this targeting capability for enhanced sustainability of crop production. Many studies have demonstrated the efficacy of nanomaterials for agrochemical delivery, yet few exploit the tunable surface chemistry to specifically target the delivery to specific regions of the crop. The primary approach to introducing this capability is through modification of the surface chemistry, typically with ligands. This perspective presents a ligand design strategy for targeting delivery and considers three primary ligand components: the nanomaterial binder, ligand body, and terminal functionality. In addition, we discuss the selection of unique compounds in two target regions, the root and the leaf. We identify ligand terminal functionalities that can be used to interact with specific compounds in these regions enabling enhanced interaction with the agrochemical active ingredient. The result is a proposed set of guidelines to design nanoenabled solutions for enhanced delivery efficiency.
机译:使用农用化学品 - 肥料和农药 - 在作物产量效率低下,导致对环境和公共卫生的不利影响级联。工程纳米材料有可能为有效,精确和定时向作物提供有效,精确,定时递送的创新解决方案,产生增加的生产和预防过度应用。在有希望的同时,仍然有机会实现这种针对性的作物生产可持续性的目标能力。许多研究表明纳米材料对农业化学递送的功效,但很少有利用可调谐表面化学来专门针对作物的特定区域递送。引入这种能力的主要方法是通过改性表面化学,通常用配体。该透视介绍了用于靶向递送的配体设计策略,并考虑三个主要配体组分:纳米材料粘合剂,配体体和末端官能团。此外,我们讨论了两个目标区域,根和叶子中的独特化合物的选择。我们鉴定配体末端功能,其可用于与这些区域中的特定化合物相互作用,从而能够增强与农业化学活性成分的相互作用。结果是建议的设计指南,用于设计纳米能解决方案,以提高输送效率。

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