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pH 和温度双重响应的金纳米粒子单层膜等离子体开关用于多重防伪。

pH and Temperature Dual-Responsive Plasmonic Switches of Gold Nanoparticle Monolayer Film for Multiple Anticounterfeiting.

机构信息

Department of Polymer Materials, College of Materials Science and Engineering , Shanghai University , Nanchen Road 333 , Shanghai 200444 , China.

Key Laboratory of Bio-based Polymeric Materials Technology and Application of Zhejiang Province , Ningbo Institute of Material Technology and Engineering Chinese Academy of Sciences , Ningbo 315201 , China.

出版信息

Langmuir. 2018 Oct 30;34(43):13047-13056. doi: 10.1021/acs.langmuir.8b02989. Epub 2018 Oct 22.

Abstract

Two-dimensional (2D) gold nanoparticle (Au NP) monolayer film possesses a lot of fascinating peculiarities, and has shown promising applications in photoelectrical devices, catalysis, spectroscopy, sensors, and anticounterfeiting. Because of the localized surface plasmon resonance (LSPR) property predetermined by the natural structure of metal nanoparticles, it is usually difficult to realize the reversible LSPR transition of 2D film. In this work, we report on the fabrication of a large-area free-standing Au NP monolayer film with dual-responsive switchable plasmonic property using a pH- or thermal-responsive dendronized copolymer as a stimuli-sensitive linker. In this system, an oligoethylene-glycol-based (OEG-based) dendronized copolymer (named PG1A) with pH or temperature sensitivity was first modified onto the surface of a Au NP. Then, polyethylene glycol dibenzyl aldehyde (PEG-DA) was introduced to interact with the amino moieties from PG1A before the process of oil-water interfacial self-assembly of NPs, resulting in an elastic, robust, pH- or temperature-sensitive interpenetrating network among Au NPs in monolayer films. In addition, the film could exhibit reversibly plasmonic shifts of about 77 nm and inherent color changes through varying temperature or pH. The obtained free-standing monolayer film also shows an excellent transferable property, which can be easily transferred onto substrates such as plastic molds, PDMS, copper grids, and silicon wafers. In virtue of these peculiarities of the free-standing property, special plasmonic signal, and homologous macroscopic color, the transferred film was primely applied to an anticounterfeiting security label with clear color change at the designed spots, providing a new avenue to plasmonic nanodevices with various applications.

摘要

二维(2D)金纳米粒子(Au NP)单层膜具有许多迷人的特性,并在光电设备、催化、光谱学、传感器和防伪等领域显示出了广阔的应用前景。由于金属纳米粒子的固有结构所决定的局域表面等离子体共振(LSPR)特性,通常难以实现 2D 膜的可逆 LSPR 转变。在这项工作中,我们报告了使用 pH 或热响应型树枝状聚合物作为刺激敏感连接体,制备具有双响应可调等离子体特性的大面积自由站立 Au NP 单层膜。在该体系中,首先将具有 pH 或温度敏感性的基于聚乙二醇的(OEG 基)树枝状聚合物(命名为 PG1A)修饰在 Au NP 的表面。然后,在 NP 的油水界面自组装过程中,引入聚乙二醇二苄基醛(PEG-DA)与 PG1A 中的氨基相互作用,导致在单层膜中 Au NP 之间形成具有弹性、坚固、pH 或温度敏感性的互穿网络。此外,该薄膜可通过改变温度或 pH 值实现约 77nm 的可逆等离子体位移和固有颜色变化。所得的自由站立单层膜还具有优异的可转移性,可轻松转移到塑料模具、PDMS、铜网和硅片等基底上。由于其自由站立特性、特殊等离子体信号和同源宏观颜色的独特性,该转移膜被优先应用于防伪安全标签,在设计的点上可实现清晰的颜色变化,为具有各种应用的等离子体纳米器件提供了新途径。

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