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基于自组装纤维素纳米棒和金纳米粒子的自立式光控手性等离子体光子晶体。

Free-Standing Optically Switchable Chiral Plasmonic Photonic Crystal Based on Self-Assembled Cellulose Nanorods and Gold Nanoparticles.

机构信息

State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, Jilin University , 2699 Qianjin Street, Changchun 130012, China.

State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University , 2699 Qianjin Street, Changchun 130012, China.

出版信息

ACS Appl Mater Interfaces. 2015 Oct 7;7(39):21797-806. doi: 10.1021/acsami.5b05645. Epub 2015 Sep 24.

Abstract

Photonic crystals incorporating with plasmonic nanoparticles have recently attracted considerable attention due to their novel optical properties and potential applications in future subwavelength optics, biosensing and data storage device. Here we demonstrate a free-standing chiral plasmonic film composed of entropy-driven self-co-assembly of gold nanoparticles (GNPs) and rod-like cellulose nanocrystals (CNCs). The CNCs-GNPs composite films not only preserve the photonic ordering of the CNCs matrix but also retain the plasmonic resonance of GNPs, leading to a distinct plasmon-induced chiroptical activity and a strong resonant plasmonic-photonic coupling that is confirmed by the stationary and ultrafast transient optical response. Switchable optical activity can be obtained by either varying the incidence angle of lights, or by taking advantage of the responsive feature of the CNCs matrix. Notably, an angle-dependent plasmon resonance in chiral nematic hybrid film has been observed for the first time, which differs drastically from that of the GNPs embed in three-dimensional photonic crystals, revealing a close relation with the structure of the host matrix. The current approach for fabricating device-scale, macroscopic chiral plasmonic materials from abundant CNCs with robust chiral nematic matrix may enable the mass production of functional optical metamaterials.

摘要

光子晶体与等离子体纳米粒子结合,由于其新颖的光学特性和在未来亚波长光学、生物传感和数据存储设备中的潜在应用,最近引起了相当大的关注。在这里,我们展示了一种由金纳米粒子(GNPs)和棒状纤维素纳米晶体(CNCs)的熵驱动自组装形成的独立手性等离子体薄膜。CNCs-GNPs 复合薄膜不仅保留了 CNCs 基体的光子有序性,而且保留了 GNPs 的等离子体共振,导致明显的等离子体诱导手性活性和强共振等离子体-光子耦合,这通过稳态和超快瞬态光学响应得到证实。通过改变光的入射角或利用 CNCs 基体的响应特性,可以获得可切换的光活性。值得注意的是,首次观察到手性向列混合膜中的角相关等离子体共振,与嵌入三维光子晶体中的 GNPs 的等离子体共振有很大不同,这与主链的结构密切相关。本研究采用丰富的 CNCs 制备具有稳健手性向列基质的大尺寸宏观手性等离子体材料的方法,可能实现功能光学超材料的大规模生产。

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