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Engineering sub-100 nm multi-layer nanoshells

机译:工程亚100纳米多层纳米壳

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摘要

Nanoshells are a novel class of optically tunable nanoparticles that consist of alternating dielectric and metal layers. They can potentially be used as contrast agents for multi-label molecular imaging, provided that the shell thicknesses are tuned to specific ratios. Sub-100 nm multi-layer nanoshells can potentially have improved tissue penetration, generate a strong surface plasmon resonance, and may exhibit absorption peaks in the visible-near-infrared (NIR) spectrum. Herein we describe the synthesis and characterization of bilayered concentric nanoshells with an overall diameter of around 50 nm consisting of a gold core, a tunable silica spacer layer and an outermost gold shell, which is approximately 16 times smaller than previously described multi-layered nanoparticles. The structured nanoshells were visualized by transmission electron microscopy (TEM) at each step of preparation. The absorption spectra of the gold-silica bilayered nanoshells are in good agreement with Mie's prediction and their resonance peak position is a function of the relative thickness of silica and gold layers.
机译:纳米壳是一类新型的光学可调纳米颗粒,由交替的介电层和金属层组成。它们可以潜在地用作多标记分子成像的造影剂,只要将壳的厚度调整到特定比例即可。低于100 nm的多层纳米壳可能具有改善的组织穿透力,产生强大的表面等离振子共振,并可能在可见-近红外(NIR)光谱中显示吸收峰。本文中,我们描述了由金芯,可调节的二氧化硅间隔层和最外层金壳组成的,总直径约为50 nm的双层同心纳米壳的合成和表征,该双层壳比先前描述的多层纳米颗粒小约16倍。在制备的每个步骤,通过透射电子显微镜(TEM)观察结构化的纳米壳。金-二氧化硅双层纳米壳的吸收光谱与Mie的预测非常吻合,并且其共振峰位置是二氧化硅和金层相对厚度的函数。

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