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受钢笔启发的三维胶体组装体,由飞升至规模的金属纳米颗粒组成。

Fountain Pen-Inspired 3D Colloidal Assembly, Consisting of Metallic Nanoparticles on a Femtoliter Scale.

作者信息

Kim Sung-Jo, Lee Il-Hyun, Kim Won-Geun, Hwang Yoon-Hwae, Oh Jin-Woo

机构信息

BIT Fusion Technology Center, Pusan National University, Busan 46241, Republic of Korea.

Department of Nano Fusion Technology, Pusan National University, Busan 46241, Republic of Korea.

出版信息

Nanomaterials (Basel). 2023 Aug 24;13(17):2403. doi: 10.3390/nano13172403.

Abstract

The 3D colloidal assemblies composed of nanoparticles (NPs) are closely associated with optical properties such as photonic crystals, localized surface plasmon resonance, and surface-enhanced Raman scattering. However, research on their fabrication remains insufficient. Here, the femtoliter volume of a 3D colloidal assembly is shown, using the evaporation of a fine fountain pen. A nano-fountain pen (NPF) with a micrometer-level tip inner diameter was adopted for the fine evaporation control of the ink solvent. The picoliters of the evaporation occurring at the NFP tip and femtoliter volume of the 3D colloidal assembly were analyzed using a diffusion equation. The shape of the 3D colloidal assembly was dependent on the evaporation regarding the accumulation time and tip size, and they exhibited random close packing. Using gold-, silver-, and platinum-NPs and mixing ratios of them, diverse 3D colloidal assemblies were formed. The spectra regarding a localized surface plasmon resonance of them were changed according to composition and mixing ratio. We expect that this could be widely applied as a simple fabrication tool in order to explore complex metamaterials constructed of nanoparticles, as this method is highly flexible in varying the shape as well as composition ratio of self-assembled structures.

摘要

由纳米粒子(NP)组成的三维胶体组件与光子晶体、局域表面等离子体共振和表面增强拉曼散射等光学性质密切相关。然而,对其制造的研究仍然不足。在此,通过细钢笔的蒸发展示了三维胶体组件的飞升体积。采用具有微米级尖端内径的纳米钢笔(NPF)对墨水溶剂进行精细蒸发控制。使用扩散方程分析了在NPF尖端发生的皮升蒸发量和三维胶体组件的飞升体积。三维胶体组件的形状取决于蒸发的累积时间和尖端尺寸,并且它们呈现出随机密堆积。使用金、银和铂纳米粒子以及它们的混合比例,形成了各种三维胶体组件。它们的局域表面等离子体共振光谱根据组成和混合比例而变化。我们期望这可以作为一种简单的制造工具被广泛应用,以探索由纳米粒子构建的复杂超材料,因为这种方法在改变自组装结构的形状以及组成比例方面具有高度灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffec/10490325/06a0f3fd5d21/nanomaterials-13-02403-g001.jpg

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