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多组分手性等离子体混合纳米材料:合成与应用的最新进展

Multicomponent chiral plasmonic hybrid nanomaterials: recent advances in synthesis and applications.

作者信息

Yang Guizeng, Sun Lichao, Zhang Qingfeng

机构信息

College of Chemistry and Molecular Sciences, Wuhan University Wuhan 430072 China

出版信息

Nanoscale Adv. 2023 Dec 6;6(2):318-336. doi: 10.1039/d3na00808h. eCollection 2024 Jan 16.

Abstract

Chiral hybrid nanomaterials with multiple components provide a highly promising approach for the integration of desired chirality with other functionalities into one single nanoscale entity. However, precise control over multicomponent chiral plasmonic hybrid nanomaterials to enable their application in diverse and complex scenarios remains a significant challenge. In this review, our focus lies on the recent advances in the preparation and application of multicomponent chiral plasmonic hybrid nanomaterials, with an emphasis on synthetic strategies and emerging applications. We first systematically elucidate preparation methods for multicomponent chiral plasmonic hybrid nanomaterials encompassing the following approaches: physical deposition approach, galvanic replacement reaction, chiral molecule-mediated, chiral heterostructure, circularly polarized light-mediated, magnetically induced, and chiral assembly. Furthermore, we highlight emerging applications of multicomponent chiral plasmonic hybrid nanomaterials in chirality sensing, enantioselective catalysis, and biomedicine. Finally, we provide an outlook on the challenges and opportunities in the field of multicomponent chiral plasmonic hybrid nanomaterials. In-depth investigations of these multicomponent chiral hybrid nanomaterials will pave the way for the rational design of chiral hybrid nanostructures with desirable functionalities for emerging technological applications.

摘要

具有多种组分的手性杂化纳米材料为将所需手性与其他功能整合到单个纳米级实体中提供了一种极有前景的方法。然而,精确控制多组分手性等离子体杂化纳米材料以使其能够应用于各种复杂场景仍然是一项重大挑战。在本综述中,我们重点关注多组分手性等离子体杂化纳米材料在制备和应用方面的最新进展,重点是合成策略和新兴应用。我们首先系统地阐述了多组分手性等离子体杂化纳米材料的制备方法,包括以下方法:物理沉积法、电化置换反应、手性分子介导、手性异质结构、圆偏振光介导、磁诱导和手性组装。此外,我们强调了多组分手性等离子体杂化纳米材料在手性传感、对映选择性催化和生物医学方面的新兴应用。最后,我们展望了多组分手性等离子体杂化纳米材料领域的挑战和机遇。对这些多组分手性杂化纳米材料的深入研究将为合理设计具有理想功能的手性杂化纳米结构以用于新兴技术应用铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b158/10790966/2fb625dd2c23/d3na00808h-f1.jpg

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