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Sombrero-shaped plasmonic nanoparticles with molecular-level sensitivity and multifunctionality

机译:具有分子水平敏感性和多功能性的草帽型等离子体纳米颗粒

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摘要

We demonstrate top-down synthesis of monodisperse plasmonic nanoparticles designed to contain internal Raman hot spots. Our Raman-active nanoparticles are fabricated using nanoimprint lithography and thin-film deposition and are composed of novel internal structures with sublithographic dimensions: a disk-shaped Ag core, a Petri-dish-shaped SiO_2 base whose inner surface is coated with Ag film, and a sub-10 nm scale circular gap between the core and the base. Confocal Raman measurements and electromagnetic simulations show that Raman hot spots appear at the inside perimeter of individual nanoparticles and serve as the source of a 1000-fold improvement of minimum molecular detection level that enables detection of signals from a few molecules near hot spots. A multimodality version of these nanoparticles, which includes the functionality offered by magnetic multilayers, is also demonstrated. These results illustrate the potential of direct fabrication for creating exotic monodisperse nanoparticles, which combine engineered internal nanostructures and multilayer composite materials, for use in nanoparticle-based molecular imaging and detection.
机译:我们展示了自上而下的单分散等离子体纳米颗粒的合成,旨在包含内部拉曼热点。我们的拉曼活性纳米粒子是使用纳米压印光刻和薄膜沉积工艺制造的,由具有亚光刻尺寸的新型内部结构组成:盘状Ag核,Petri盘状SiO_2基底(其内表面涂有Ag膜,核心与基部之间的间隙小于10 nm。共焦拉曼测量和电磁模拟表明,拉曼热点出现在单个纳米粒子的内周,并且是最小分子检测水平提高1000倍的源,该最低分子检测水平能够检测到热点附近一些分子的信号。还演示了这些纳米颗粒的多峰形式,其中包括磁性多层膜提供的功能。这些结果说明了直接制造产生异质单分散纳米粒子的潜力,该纳米粒子将工程内部纳米结构和多层复合材料结合在一起,可用于基于纳米粒子的分子成像和检测。

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