Bottom–Up Metasurfaces for Biotechnological Applications

IF 14.1 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY Advanced Science Pub Date : 2025-02-08 DOI:10.1002/advs.202413679
Francesca Petronella, Federica Zaccagnini, Maria Laura Sforza, Vincenzo De Mei, Luciano De Sio
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Abstract

Metasurfaces are the 2D counterparts of metamaterials, and their development is accelerating rapidly in the past years. This progress enables the creation of devices capable of uniquely manipulating light, with applications ranging from optical communications to remote biosensing. Metasurfaces are engineered by rational assembly of subwavelength elements, defined as meta-atoms, giving rise to unique physical properties arising from the collective behavior of meta-atoms. These meta-atoms are typically organized using effective, reproducible, and precise nanofabrication methods that require a lot of effort to achieve scalable and cost-effective metasurfaces. In contrast, bottom–up methods based on colloidal nanoparticles (NPs) have developed in the last decade as a fascinating alternative for accelerating the technological spread of metasurfaces. The present review takes stock of recent advances in the fabrication and applications of hybrid metasurfaces prepared by bottom-up methods, resulting in disordered metasurfaces. In particular, metasurfaces prepared with plasmonic NPs are emphasized for their multifold applications, which are discussed from a biotechnology perspective. However, some examples of organized metasurfaces prepared by merging bottom–up and top–down approaches are also described. Finally, leveraging the historical disordered metasurface evolution, the review draws new perspectives for random metasurface design and applications.

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自底向上的生物技术应用元表面。
超表面是超材料的二维对应物,近年来发展迅速。这一进展使人们能够创造出能够独特地操纵光的设备,应用范围从光通信到远程生物传感。超表面是由亚波长元素的合理组装而成的,这些元素被定义为元原子,从元原子的集体行为中产生独特的物理性质。这些元原子通常使用有效的、可重复的和精确的纳米制造方法来组织,这些方法需要大量的努力来实现可扩展和经济有效的元表面。相比之下,基于胶体纳米颗粒(NPs)的自下而上方法在过去十年中发展起来,作为加速超表面技术传播的一种迷人的替代方法。本文综述了自底向上制备的杂化超表面及其应用的最新进展。特别强调了用等离子体纳米粒子制备的超表面的多重应用,并从生物技术的角度进行了讨论。但是,还描述了一些通过合并自底向上和自顶向下方法制备的有组织元表面的示例。最后,回顾了无序元表面的历史演变,为随机元表面的设计和应用提供了新的视角。
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来源期刊
Advanced Science
Advanced Science CHEMISTRY, MULTIDISCIPLINARYNANOSCIENCE &-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
18.90
自引率
2.60%
发文量
1602
审稿时长
1.9 months
期刊介绍: Advanced Science is a prestigious open access journal that focuses on interdisciplinary research in materials science, physics, chemistry, medical and life sciences, and engineering. The journal aims to promote cutting-edge research by employing a rigorous and impartial review process. It is committed to presenting research articles with the highest quality production standards, ensuring maximum accessibility of top scientific findings. With its vibrant and innovative publication platform, Advanced Science seeks to revolutionize the dissemination and organization of scientific knowledge.
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