Cellulose-Based Photothermal Coating: A Sustainable Solution for Seed Protection and Long-Term Grain Storage.

Ji, Xin; Tian, Weiguo; Jin, Kunfeng; Wen, Chaojun; Zhang, Yingtuan; Yu, Jian; Zhang, Jun · ACS Nano · 2023

basic_science · Level V

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Abstract

High-output modern agriculture based on synthetic chemicals (biocides, pesticides, and fertilizers) feeds the growing global population. To completely abandon the use of pesticides and fertilizers will undoubtedly cause a severe food crisis worldwide, and sustainable alternative solutions are urgently demanded to stop biocides and fertilizers overuse. Herein, a versatile and green strategy is proposed for seed protection and long-term storage of grains using a cellulose-based photothermal coating (PDA NPs@Cell-N<sup>+</sup>) that consists of photothermal polydopamine nanoparticles (PDA NPs) and a positive-charged cellulose derivative (Cell-N<sup>+</sup>) to eradicate seed-borne bacteria and fungi simply under infrared irradiation. <i>In vitro</i> and <i>in vivo</i> assays and the seedling-stage phenotypes of mung bean (<i>Vigna radiata</i>) suggest that pathogenic microbes, including the tough <i>Aspergillus flavus</i> (inhibition ratio >99%), can be efficiently eliminated by photothermal therapy. Thus, the seed-borne diseases of mung beans can finally be prevented. Owing to excellent solubility and biocompatibility, the PDA NPs@Cell-N<sup>+</sup> coating can be washed off and recycled without food safety concerns. PDA NPs@Cell-N<sup>+</sup> can be a nature-based solution for seed protection and long-term grain storage.

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