Transient Biomacromolecular Nanoparticles for Labels with Self-Erasable and Rewritable Ability

IF 3.1 Q2 CHEMISTRY, MULTIDISCIPLINARY ChemSystemsChem Pub Date : 2023-02-03 DOI:10.1002/syst.202200036
Jiahui Li, Dr. Liang Wang, Chunyu Pan, Prof. Bai Yang, Prof. Yunfeng Li
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引用次数: 1

Abstract

Nature utilizes non-equilibrium self-assembly to achieve remarkable functions. Although such systems have been synthesized, this class of assembly is only sparsely explored in innovative materials with life-like functions. Here, we report transient nanoparticles driven by adenosine triphosphate and their applications on the self-erasable and rewritable security labels. We show that the lifetime of transient nanoparticles can be tuned from a few minutes to hundreds of minutes through adjusting concentrations of the components. By integrating the transient nanoparticles into hydrogels, we achieve self-erasable and rewritable labels with time- and space-encoded information encryption. Notably, a smart Morse code is implemented by programming the hydrogel labels in a spatiotemporal manner. This work provides an emerging material involving transient nanoparticles for information encryption, further accelerating the explorations of the new type information encryption materials.

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用于具有自擦除和可重写能力的标签的瞬态生物大分子纳米颗粒
大自然利用非平衡自组装来实现非凡的功能。虽然这样的系统已经被合成,但这类组装只在具有类似生命功能的创新材料中进行了很少的探索。本文报道了由三磷酸腺苷驱动的瞬态纳米颗粒及其在可自擦和可重写安全标签上的应用。我们表明,通过调整组分的浓度,瞬态纳米颗粒的寿命可以从几分钟调整到数百分钟。通过将瞬态纳米颗粒集成到水凝胶中,我们实现了具有时间和空间编码信息加密的可自擦和可重写标签。值得注意的是,通过以时空方式编程水凝胶标签来实现智能莫尔斯电码。本工作为信息加密提供了一种包含瞬态纳米粒子的新兴材料,进一步加速了对新型信息加密材料的探索。
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