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3D可打印金属-聚合物纳米复合材料的等离子体表征

Plasmonic Characterization of 3D Printable Metal-Polymer Nanocomposites.

作者信息

Mata María de la, Sanz de León Albeto, Valencia-Liñán Luisa M, Molina Sergio I

机构信息

Departamento de Ciencia de los Materiales, I. M. y Q. I., IMEYMAT, Universidad de Cádiz, Campus Rio San Pedro, 11510 Puerto Real, Spain.

出版信息

ACS Mater Au. 2024 May 15;4(4):424-435. doi: 10.1021/acsmaterialsau.4c00007. eCollection 2024 Jul 10.

Abstract

Plasmonic polymer nanocomposites (i.e., polymer matrices containing plasmonic nanostructures) are appealing candidates for the development of manifold technological devices relying on light-matter interactions, provided that they have inherent properties and processing capabilities. The smart development of plasmonic nanocomposites requires in-depth optical analyses proving the material performance, along with correlative studies guiding the synthesis of tailored materials. Importantly, plasmon resonances emerging from metal nanoparticles affect the macroscopic optical response of the nanocomposite, leading to far- and near-field perturbations useful to address the optical activity of the material. We analyze the plasmonic behavior of two nanocomposites suitable for 3D printing, based on acrylic resin matrices loaded with Au or Ag nanoparticles. We compare experimental and computed UV-vis macroscopic spectra (far-field) with single-particle electron energy loss spectroscopy (EELS) analyses (near-field). We extended the calculations of Au and Ag plasmon-related resonances over different environments and nanoparticle sizes. Discrepancies between UV-vis and EELS are dependent on the interplay between the metal considered, the surrounding media, and the size of the nanoparticles. The study allows comparing in detail the plasmonic performance of Au- and Ag-polymer nanocomposites, whose plasmonic response is better addressed, accounting for their intended applications (i.e., whether they rely on far- or near-field interactions).

摘要

等离子体聚合物纳米复合材料(即含有等离子体纳米结构的聚合物基体)是依靠光与物质相互作用开发多种技术设备的有吸引力的候选材料,前提是它们具有固有特性和加工能力。等离子体纳米复合材料的智能开发需要深入的光学分析来证明材料性能,以及相关研究来指导定制材料的合成。重要的是,金属纳米颗粒产生的等离子体共振会影响纳米复合材料的宏观光学响应,从而导致对解决材料光学活性有用的远场和近场扰动。我们基于负载金或银纳米颗粒的丙烯酸树脂基体,分析了两种适用于3D打印的纳米复合材料的等离子体行为。我们将实验和计算得到的紫外-可见宏观光谱(远场)与单粒子电子能量损失谱(EELS)分析(近场)进行了比较。我们扩展了金和银等离子体相关共振在不同环境和纳米颗粒尺寸下的计算。紫外-可见光谱和EELS之间的差异取决于所考虑的金属、周围介质和纳米颗粒尺寸之间的相互作用。该研究能够详细比较金-聚合物和银-聚合物纳米复合材料的等离子体性能,考虑到它们的预期应用(即它们是依赖远场还是近场相互作用),其等离子体响应能得到更好的处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0a5/11240405/04bc3d29f078/mg4c00007_0001.jpg

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