将发光粒子输送到植物体内进行信息编码和存储

IF 20.6 Q1 OPTICS Light-Science & Applications Pub Date : 2024-08-28 DOI:10.1038/s41377-024-01518-x
Wei Li, Junjie Lin, Wanyi Huang, Qingrou Wang, Haoran Zhang, Xuejie Zhang, Jianle Zhuang, Yingliang Liu, Songnan Qu, Bingfu Lei
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摘要

在智能农业时代,植物生长信息的精确标记和记录对现代农业生产提出了挑战。本研究介绍了涂有 H3PO4 的铝酸锶颗粒作为发光标签,能够在植物生长过程中进行空间嵌入,进行信息编码和存储。H3PO4 的封装赋予了 SrAl2O4:Eu2+,Dy3+ (SAO) 稳定性和更强的发光能力。利用 SAO@H3PO4 作为低损伤发光标签,我们通过微针(MNs)贴片将其输送到植物体内。嵌入植物体内的 SAO@H3PO4 显示出持续且无变化的高信噪比余辉发射,27 天内发光强度保持在原来的 78% 左右。为了满足不同的信息记录需求,设计了各种几何形状的 MN 来装载 SAO@H3PO4,通过设计的程序可以准确识别不同形状的发光信号,并可以方便地在计算机上查看相应的信息。此外,受二进制信息概念的启发,还创建了发光点和非发光点特定排列的 MNs 补丁,从而在叶片上形成了不同的发光 MNs 阵列。先进的照相系统配合量身定制的程序,能准确识别标签并将其映射到相应的记录信息中。这些发现展示了植物体内低损伤发光标签的潜力,为方便、广泛地存储植物生长信息铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Delivery of luminescent particles to plants for information encoding and storage

In the era of smart agriculture, the precise labeling and recording of growth information in plants pose challenges for modern agricultural production. This study introduces strontium aluminate particles coated with H3PO4 as luminescent labels capable of spatial embedding within plants for information encoding and storage during growth. The encapsulation with H3PO4 imparts stability and enhanced luminescence to SrAl2O4:Eu2+,Dy3+ (SAO). Using SAO@H3PO4 as a low-damage luminescent label, we implement its delivery into plants through microneedles (MNs) patches. The embedded SAO@H3PO4 within plants exhibits sustained and unaltered high signal-to-noise afterglow emission, with luminous intensity remaining at approximately 78% of the original for 27 days. To cater to diverse information recording needs, MNs of various geometric shapes are designed for loading SAO@H3PO4, and the luminescent signals in different shapes can be accurately identified through a designed program, the corresponding information can be conveniently viewed on a computer. Additionally, inspired by binary information concepts, MNs patches with specific arrangements of luminescent and non-luminescent points are created, resulting in varied luminescent MNs arrays on leaves. An advanced camera system with a tailored program accurately identifies and maps the labels to the corresponding recorded information. These findings showcase the potential of low-damage luminescent labels within plants, paving the way for convenient and widespread storage of plant growth information.

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来源期刊
Light-Science & Applications
Light-Science & Applications 数理科学, 物理学I, 光学, 凝聚态物性 II :电子结构、电学、磁学和光学性质, 无机非金属材料, 无机非金属类光电信息与功能材料, 工程与材料, 信息科学, 光学和光电子学, 光学和光电子材料, 非线性光学与量子光学
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