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Porosity-controllable magnetoplasmonic nanoparticles and their assembled arrays

机译:Porosity-controllable magnetoplasmonic纳米粒子及其组装阵列

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摘要

Control of the chemical and physical properties of nanoscale colloids and their nanoassemblies remains a challenging issue for enhancing the performance and functionalities of nanodevices. In this study, we report a post-synthesis etching method to tailor the porosity of the Fe3O4 shells coating on Ag NPs, establishing a facile but effective approach to regulate the chemical and optical properties of the colloids and their assembled structures. As the shell porosity increases, the NPs are transformed, producing enhanced catalytic activity and the surface-enhanced Raman spectroscopy (SERS) effect, which results from enhanced chemical diffusion into the Ag core. Magnetoplasmonic (MagPlas) one- (1D) and two- (2D) dimensional arrays fabricated using these porosity-controllable NPs exhibit intriguing plasmon properties that are strongly affected by the porosity of the particle shell. Furthermore, the bright coloration of the 2D arrays is tuned by changing the shell porosity or introducing an additional metallic layer. Such 1D and 2D porous MagPlas metastructures possessing Fe3O4 shells with tunable porosities are a fulcrum for developing recyclable catalysts and tunable optical filters with optimized activity, selectivity, and sensitivity, as well as color displays and sensing platforms.
机译:控制的化学和物理性质纳米胶体及其nanoassemblies为提高仍然是一个极富挑战性的问题nanodevices的性能和功能。在这项研究中,我们报告一个post-synthesis蚀刻裁缝Fe3O4贝壳的孔隙度的方法涂层Ag NPs,建立一个简单但是控制化学和有效的方法光学性质的胶体和他们组装结构。增加,NPs转换,产生增强的催化活性和表面增强拉曼光谱(ser)从增强的化学效应,结果扩散到Ag)的核心。(MagPlas) - (1 d)和两维(2 d)数组的使用这些porosity-controllable NPs展览有趣的等离子体属性强烈影响粒子的孔隙度。二维数组的明亮的颜色调整通过改变壳孔隙度或引入一个额外的金属层。MagPlas亚结构拥有Fe3O4贝壳对可调疏一个支点发展可回收的催化剂和可调光学过滤器与优化活动,选择性和敏感性,以及颜色显示和传感平台。

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