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用于调节光学手性的各向异性金三角形纳米片的位点选择性手性生长

Site-Selective Chiral Growth of Anisotropic Au Triangular Nanoplates for Tuning the Optical Chirality.

作者信息

Tao Yunlong, Sun Lichao, Liu Chuang, Yang Guizeng, Sun Xuehao, Zhang Qingfeng

机构信息

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

出版信息

Small. 2023 Jul;19(30):e2301218. doi: 10.1002/smll.202301218. Epub 2023 Apr 8.

Abstract

Site-selective chiral growth of anisotropic nanoparticles is of great importance to realize the plasmonic nanostructures with delicate geometry and desired optical chirality; however, it remains largely unexplored. This work demonstrates a controlled site-selective chiral growth system based on the seed-mediated growth of anisotropic Au triangular nanoplates. The site-selective chiral growth involves two distinct underlying pathways, faceted growth and island growth, which are interswitchable upon maneuvering the interplay of chiral molecules, surfactants, and reducing agents. The pathway switch governs the geometric and chirality evolution of Au triangular nanoplates, giving rise to tailorable circular dichroism spectra. The ability to tune the optical chirality in a controlled manner by manipulating the site-selective chiral growth pathway opens up a promising strategy for exploiting chiral metamaterials with increasing architectural complexity in chiroptical applications.

摘要

各向异性纳米粒子的位点选择性手性生长对于实现具有精细几何形状和所需光学手性的等离子体纳米结构至关重要;然而,这在很大程度上仍未得到探索。这项工作展示了一种基于种子介导的各向异性金三角形纳米板生长的可控位点选择性手性生长系统。位点选择性手性生长涉及两条不同的潜在途径,即刻面生长和岛状生长,通过操纵手性分子、表面活性剂和还原剂之间的相互作用,这两条途径可以相互转换。途径的转换控制着金三角形纳米板的几何形状和手性演变,从而产生可定制的圆二色光谱。通过操纵位点选择性手性生长途径以可控方式调节光学手性的能力,为在旋光应用中开发具有日益复杂结构的手性超材料开辟了一条有前景的策略。

相似文献

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Chiral Plasmonic Nanostructures Enabled by Bottom-Up Approaches.通过自下而上方法实现的手性等离子体纳米结构
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