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金纳米棒的表面修饰:多功能策略与应用前景

Surface Modification of Gold Nanorods: Multifunctional Strategies and Application Prospects.

作者信息

Ren Rui, Xiong Bijin, Zhu Jintao

机构信息

Key Laboratory of Materials Chemistry for Energy Conversion and Storage (Ministry of Education), School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China.

出版信息

Chemistry. 2024 Dec 13;30(70):e202400851. doi: 10.1002/chem.202400851. Epub 2024 Nov 7.

DOI:10.1002/chem.202400851
PMID:39352147
Abstract

Gold nanorods (AuNRs), as an important type of gold nanomaterials, have attracted much attention in the nano field. Compared with gold nanoparticls, AuNRs have broader application potential due to their tunable localized surface plasmon resonance properties and anisotropic shapes. Yet, conventional synthesis methods using surfactants have limited the use of AuNRs in a variety of fields such as biomedical applications, plasma-enhanced fluorescence, optics and optoelectronic devices. To solve this problem and improve the stability and biocompatibility of AuNRs, researchers in recent years have used surface modification and functionalization to modify AuNRs, among which the introduction of organic ligands to prepare organic/gold hybrid nanorods has become an effective strategy. Organic materials have better toughness and easy processing, and by introducing organic ligands into the surface of AuNRs, the molecular-level composite of organic and inorganic materials can be realized, thus obtaining hybrid nanorods with excellent properties. This paper reviews the research progress of hybrid nanocomposites, and introducing the synthesis methods of AuNRs and the development of surface ligand modification, then summarises the applications of a wide variety of ligands. Also, the advantages and disadvantages of different ligands and their roles in further self-assembly processes are discussed.

摘要

金纳米棒(AuNRs)作为金纳米材料的一种重要类型,在纳米领域备受关注。与金纳米颗粒相比,AuNRs因其可调节的局域表面等离子体共振特性和各向异性形状而具有更广泛的应用潜力。然而,使用表面活性剂的传统合成方法限制了AuNRs在生物医学应用、等离子体增强荧光、光学和光电器件等各种领域的应用。为了解决这一问题并提高AuNRs的稳定性和生物相容性,近年来研究人员通过表面修饰和功能化对AuNRs进行改性,其中引入有机配体制备有机/金杂化纳米棒已成为一种有效策略。有机材料具有更好的韧性且易于加工,通过在AuNRs表面引入有机配体,可以实现有机和无机材料的分子级复合,从而获得具有优异性能的杂化纳米棒。本文综述了杂化纳米复合材料的研究进展,介绍了AuNRs的合成方法和表面配体修饰的发展,总结了各种配体的应用。此外,还讨论了不同配体的优缺点及其在进一步自组装过程中的作用。

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