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等离子体纳米复合材料薄膜中的超分子手性同步

Supramolecular Chirality Synchronization in Thin Films of Plasmonic Nanocomposites.

作者信息

Szustakiewicz Piotr, Kowalska Natalia, Grzelak Dorota, Narushima Tetsuya, Góra Monika, Bagiński Maciej, Pociecha Damian, Okamoto Hiromi, Liz-Marzán Luis M, Lewandowski Wiktor

机构信息

Laboratory of Organic Nanomaterials and Biomolecules, Faculty of Chemistry, University of Warsaw, Pasteura 1 Street, 02-093 Warsaw, Poland.

Institute for Molecular Science (IMS) and The Graduate University for Advanced Studies (SOKENDAI), 38 Nishigonaka, Myodaiji, Okazaki, Aichi 444-8585, Japan.

出版信息

ACS Nano. 2020 Oct 27;14(10):12918-12928. doi: 10.1021/acsnano.0c03964. Epub 2020 Sep 21.

Abstract

Mirror symmetry breaking in materials is a fascinating phenomenon that has practical implications for various optoelectronic technologies. Chiral plasmonic materials are particularly appealing due to their strong and specific interactions with light. In this work we broaden the portfolio of available strategies toward the preparation of chiral plasmonic assemblies, by applying the principles of chirality synchronization-a phenomenon known for small molecules, which results in the formation of chiral domains from transiently chiral molecules. We report the controlled cocrystallization of 23 nm gold nanoparticles and liquid crystal molecules yielding domains made of highly ordered, helical nanofibers, preferentially twisted to the right or to the left within each domain. We confirmed that such micrometer sized domains exhibit strong, far-field circular dichroism (CD) signals, even though the bulk material is racemic. We further highlight the potential of the proposed approach to realize chiral plasmonic thin films by using a mechanical chirality discrimination method. Toward this end, we developed a rapid CD imaging technique based on the use of polarized light optical microscopy (POM), which enabled probing the CD signal with micrometer-scale resolution, despite of linear dichroism and birefringence in the sample. The developed methodology allows us to extend intrinsically local effects of chiral synchronization to the macroscopic scale, thereby broadening the available tools for chirality manipulation in chiral plasmonic systems.

摘要

材料中的镜像对称性破缺是一种引人入胜的现象,对各种光电子技术具有实际意义。手性等离子体材料因其与光的强烈且特定的相互作用而特别具有吸引力。在这项工作中,我们通过应用手性同步原理(一种小分子中已知的现象,它会导致由瞬态手性分子形成手性域),拓宽了制备手性等离子体组件的可用策略组合。我们报告了23纳米金纳米颗粒与液晶分子的可控共结晶,产生了由高度有序的螺旋纳米纤维组成的域,每个域内优先向右或向左扭曲。我们证实,即使块状材料是外消旋的,这种微米级的域也表现出强烈的远场圆二色性(CD)信号。我们进一步强调了所提出的方法通过使用机械手性鉴别方法实现手性等离子体薄膜的潜力。为此,我们基于偏振光光学显微镜(POM)开发了一种快速CD成像技术,该技术能够以微米级分辨率探测CD信号,尽管样品中存在线性二色性和双折射。所开发的方法使我们能够将手性同步的固有局部效应扩展到宏观尺度,从而拓宽了手性等离子体系统中手性操纵的可用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e592/7596782/7da8a2d17e83/nn0c03964_0001.jpg

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