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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Nanoporous Gold Nanoframes with Minimalistic Architectures: Lower Porosity Generates Stronger Surface-Enhanced Raman Scattering Capabilities
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Nanoporous Gold Nanoframes with Minimalistic Architectures: Lower Porosity Generates Stronger Surface-Enhanced Raman Scattering Capabilities

机译:具有简约架构的纳米多孔金纳米框架:较低的孔隙率可产生更强的表面增强拉曼散射能力

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摘要

Current synthesis of gold nanoframes has only demonstrated morphological control over wall thickness and wall length. Here, we demonstrate the ability to control the nanoscale porosity of these nanoframes, using a templated seed-mediated approach. The porosity on these nanoporous gold nanoframes (NGNs) is tuned by controlling the crystallite size of Au nanoparticles deposited on the AgCl templates. The yield of the NGNs approaches 100%. Despite its minimalist architectural construction, the NGNs are mechanically robust, retaining its morphology even after multiple centrifugation and sonication rounds. We further highlight that decreasing the porosity on the NGN leads to improved surface-enhanced Raman scattering (SERS) enhancement. Increasing the constituent Au crystallite size decreases the porosity, but increases the surface roughness of NGN, hence leading to greater SERS enhancement. The introduction of porosity in a gold nanoframe structure through our synthesis method is novel and generic, suggesting the extendibility of our method to other types of templates.
机译:金纳米框架的当前合成仅显示出对壁厚和壁长的形态控制。在这里,我们展示了使用模板化种子介导的方法来控制这些纳米框架的纳米级孔隙率的能力。通过控制沉积在AgCl模板上的Au纳米粒子的微晶尺寸,可以调节这些纳米多孔金纳米框架(NGN)的孔隙率。 NGN的收益率接近100%。尽管NGN具有极简的建筑结构,但它们在机械上仍很坚固,即使经过多次离心和超声处理也能保持其形态。我们进一步强调指出,降低NGN的孔隙率会导致表面增强拉曼散射(SERS)增强。增加组成金晶体的尺寸会降低孔隙率,但会增加NGN的表面粗糙度,从而导致更大的SERS增强。通过我们的合成方法在金纳米框架结构中引入孔隙率是新颖且通用的,这表明我们的方法可扩展到其他类型的模板。

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