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通过在手性介电壳层中进行纳米限域实现手性等离子体螺旋纳米粒子的对映选择性合成。

Enantioselective synthesis of chiroplasmonic helicoidal nanoparticles by nanoconfinement in chiral dielectric shells.

作者信息

Luan Xiaoxi, Tian Yu, Wu Fengxia, Cheng Lu, Tang Minghua, Lv Xiali, Wei Haili, Wang Xiaodan, Li Fenghua, Xu Guobao, Niu Wenxin

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, China.

School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei, China.

出版信息

Nat Commun. 2025 Mar 11;16(1):2418. doi: 10.1038/s41467-025-57624-w.

Abstract

Helicoid metal nanoparticles with intrinsic chirality have unveiled tailorable properties and unlocked many chirality-related applications across various fields. Nevertheless, the existing strategies for enantioselective synthesis of helicoid metal nanoparticles have been predominantly limited to gold. Here, we demonstrate a robust and versatile strategy for the enantioselective synthesis of helicoid nanoparticles beyond gold, leveraging chiral nanoconfinement provided by chiral SiO or nanoshells. The chiral nanoconfinement strategy enables the decoupling of ligand-directed crystal growth from chiral induction, allowing for the independent tuning of these two critical aspects. As a result, this approach can not only facilitate the replication of chiral shapes from the chiral nanoshells but also allow the generation of alternative chiral shapes. By employing this approach, we demonstrate the enantioselective synthesis of helicoid Pt, Au@Pt, Au@Pd, Au@Ag, and Au@Cu nanoparticles. The chiroplasmonic properties of Pt- and Pd-based chiral nanoparticles have been discovered, and the inversion of chiroplasmonic properties of Ag-based chiral nanoparticles via facet control has been documented and theoretically explained. The chiral nanoconfinement strategy enriches the toolbox for creating chiral nanoparticles and supports their exploration in diverse applications.

摘要

具有固有手性的螺旋状金属纳米颗粒展现出了可定制的特性,并在各个领域开启了许多与手性相关的应用。然而,现有的对映选择性合成螺旋状金属纳米颗粒的策略主要局限于金。在此,我们展示了一种强大且通用的策略,用于对映选择性合成除金之外的螺旋状纳米颗粒,利用手性SiO或纳米壳提供的手性纳米限域作用。手性纳米限域策略能够使配体导向的晶体生长与手性诱导解耦,从而实现对这两个关键方面的独立调控。结果,这种方法不仅能够促进手性纳米壳对手性形状的复制,还能生成其他手性形状。通过采用这种方法,我们展示了螺旋状Pt、Au@Pt、Au@Pd、Au@Ag和Au@Cu纳米颗粒的对映选择性合成。发现了基于Pt和Pd的手性纳米颗粒的手性等离激元特性,并记录了基于Ag的手性纳米颗粒通过晶面控制实现的手性等离激元特性反转,并进行了理论解释。手性纳米限域策略丰富了制备手性纳米颗粒的工具库,并支持它们在各种应用中的探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45b4/11897212/4a014d0c53a5/41467_2025_57624_Fig1_HTML.jpg

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