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物理过程辅助制备具有可调谐局域表面等离子体共振和衍射峰的周期性金-金属(M = 银、铜、银-铜)合金纳米颗粒阵列

Physical process-aided fabrication of periodic Au-M (M = Ag, Cu, Ag-Cu) alloyed nanoparticle arrays with tunable localized surface plasmon resonance and diffraction peaks.

作者信息

Zhang Honghua, Wang Chu, Li Huilin, Jiang Longfa, Men Dandan, Wang Jun, Xiang Junhuai

机构信息

Jiangxi Key Laboratory of Surface Engineering, Jiangxi Science and Technology Normal University Nanchang 330013 P. R. China.

Key Lab of Materials Physics, Anhui Key Lab of Nanomaterials and Nanotechnology, Institute of Solid State Physics, Chinese Academy of Sciences Hefei 230031 P. R. China.

出版信息

RSC Adv. 2018 Mar 1;8(17):9134-9140. doi: 10.1039/c7ra13567j. eCollection 2018 Feb 28.

Abstract

Periodic alloyed (Au-Ag, Au-Cu, Au-Ag-Cu) nanoparticle (NP) arrays with uniform size, controllable composition and center-to-center spacing were fabricated by a novel and facile strategy based on physical vapor deposition on a monolayer colloidal crystal template and further heat treatment. The composition and center-to-center spacing were manipulated by adjusting the sputtering target in the deposition process and the size of colloidal spheres of the template, respectively. The shadow effect and a dewetting model were employed to analyze the whole process of evolution from a metallic thin film to spherical nanoparticles with uniform size. The localized surface plasmon resonance (LSPR) and diffraction peaks of these alloyed arrays were systematically measured. The dielectric constant has an important influence on LSPR peaks and diffraction peaks. Both the LSPR and diffraction peaks of Au-Ag alloyed NPs arrays exhibit a blue shift due to their lower dielectric constant than that of pure Au NPs. However, compared with Au, Cu possesses a higher dielectric constant, leading to a red shift of the LSPR and diffraction peaks of Au-Cu alloyed NPs arrays. With the increase of NP size, the diffraction peaks of both binary alloyed NPs exhibit a slight red shift. Moreover, the LSPR absorption peaks were more sensitive to the composition of the NPs than the diffraction peaks. This work would open up a novel strategy in the production of alloyed NP arrays with tunable LSPR peaks and diffraction peaks, which would be very helpful to improve their practical applications in various fields.

摘要

通过一种新颖且简便的策略,基于在单层胶体晶体模板上的物理气相沉积并进一步进行热处理,制备了具有均匀尺寸、可控组成和中心间距的周期性合金(金 - 银、金 - 铜、金 - 银 - 铜)纳米颗粒(NP)阵列。在沉积过程中,通过调整溅射靶材来控制组成,通过调整模板胶体球的尺寸来控制中心间距。利用阴影效应和去湿模型分析了从金属薄膜演变为尺寸均匀的球形纳米颗粒的整个过程。系统地测量了这些合金阵列的局域表面等离子体共振(LSPR)和衍射峰。介电常数对LSPR峰和衍射峰有重要影响。金 - 银合金NP阵列的LSPR和衍射峰均表现出蓝移,因为其介电常数低于纯金NP。然而,与金相比,铜具有更高的介电常数,导致金 - 铜合金NP阵列的LSPR和衍射峰发生红移。随着NP尺寸的增加,二元合金NP的衍射峰均出现轻微红移。此外,LSPR吸收峰对NP组成的敏感性高于衍射峰。这项工作将为制备具有可调LSPR峰和衍射峰的合金NP阵列开辟一种新策略,这将对改善其在各个领域的实际应用非常有帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86ce/9078608/8df5758b2c0e/c7ra13567j-f1.jpg

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