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核壳纳米粒子在智慧农业中的应用:农业领域可持续发展的范式转变。

Application of Core/Shell Nanoparticles in Smart Farming: A Paradigm Shift for Making the Agriculture Sector More Sustainable.

机构信息

Amity Institute of Biotechnology, Amity University Haryana, Gurugram 122413, India.

出版信息

J Agric Food Chem. 2021 Mar 24;69(11):3267-3283. doi: 10.1021/acs.jafc.0c05403. Epub 2021 Mar 15.

Abstract

Modern agriculture has entered an era of technological plateau where intervention of smarter technology like nanotechnology is imminently required for making this sector economically and environmentally sustainable. Throughout the world, researchers are trying to exploit the novel properties of several nanomaterials to make agricultural practices more efficient. Core/shell nanoparticles (CSNs) have attracted much attention because of their multiple attractive novel features like high catalytic, optical, and electronic properties for which they are being widely used in sensing, imaging, and medical applications. Though it also has the promise to solve a number of issues related to agriculture, its full potential still remains mostly unexplored. This review provides a panoramic view on application of CSNs in solving several problems related to crop production and precision farming practices where the wastage of resources can be minimized. This review also summarizes different classes of CSNs and their synthesis techniques. It emphasizes and analyzes the probable potential applications of CSNs in the field of crop improvement and crop protection, detection of plant diseases and agrochemical residues, and augmentation of chloroplast mediated photosynthesis. In a nutshell, there is enormous scope to formulate and design CSN-based smart tools for applications in agriculture, making this sector more sustainable.

摘要

现代农业已经进入了技术高原期,迫切需要更智能的技术(如纳米技术)的介入,才能使这个领域在经济和环境方面实现可持续发展。在全世界,研究人员都在试图利用多种纳米材料的新颖特性,使农业实践更高效。核壳纳米粒子(CSNs)因其具有高催化、光学和电子等多种吸引人的新颖特性而备受关注,因此被广泛应用于传感、成像和医疗应用。尽管它也有望解决与农业相关的许多问题,但它的全部潜力仍在很大程度上尚未得到探索。这篇综述提供了 CSNs 在解决与作物生产和精准农业实践相关的多个问题方面的应用全景,其中可以最大限度地减少资源浪费。这篇综述还总结了 CSNs 的不同类别及其合成技术。它强调并分析了 CSNs 在作物改良和作物保护、植物病害和农化残留检测以及增强叶绿体介导的光合作用等领域的潜在应用。简而言之,在农业应用中,有大量的机会可以制定和设计基于 CSN 的智能工具,使这个领域更具可持续性。

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