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Self-assembly of noble metal-free graphene-copper plasmonic metasurfaces

机译:贵金属无金属石墨烯 - 铜等级元件的自组装

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The strong light confinement and near field enhancement by metallic scatters enabled the development of a large family of plasmonic-based technologies, including broadly used gold metasurfaces. Despite progress, the engineering of non-precious metal plasmonic devices remains challenging, due to the limited chemical stability of most nanostructured metals. Here, we report the preparation of earth-abundant plasmonic metasurfaces by the engineering of copper-graphene nano-resonators, and their use as localized surface plasmon resonance (LSPR) sensors. We achieve the large-scale self-assembly of Cu nanocrystals, featuring a protective graphene film, by one-step reduction of CuO nanoparticle networks in a hydrocarbon-containing atmosphere. Microscopic and spectroscopic investigations reveal that coalescence and reduction of the CuO nanoparticles during graphene growth result in the formation of graphene-encapsulated metallic Cu nano-islands (NIs). These Cu-graphene metasurfaces can detect down to 1% concentrations of toluene gas at room temperature, displaying a reproducible and rapid LSPR shift of 0.2 nm. Finite-difference time-domain (FDTD) simulation and structural characterization reveal that the graphene layer significantly improves the Cu crystals' long-term stability, leading to a prolonged LSPR performance over periods of three months. These insights provide promising directions for the development of earth-abundant plasmonic materials with applications ranging from biosensing to photo-catalysis and other optoelectronic devices.
机译:金属散击的强灯监禁和近现场增强使得能够开发大型基于等级的基础技术,包括广泛使用的金元件。尽管进步,由于大多数纳米结构金属的化学稳定性有限。在这里,我们通过铜 - 石墨烯纳米谐振器的工程报告了大量等离子体元件的制备,以及它们用作局部表面等离子体谐振(LSPR)传感器的用途。我们通过在含烃气氛中的CuO纳米粒子网络的一步还原,实现了Cu纳米晶体的大规模自组装,其具有保护性石墨烯膜。显微镜和光谱研究表明,石墨烯生长期间CuO纳米颗粒的聚结和还原导致石墨烯包封的金属Cu纳米岛(NIS)形成。这些Cu-石墨烯Metasurfaces可以在室温下检测到1%的甲苯气体浓度,显示0.2nm的可再现和快速的LSPL偏移。有限差分时域(FDTD)模拟和结构表征揭示了石墨烯层显着提高了Cu晶体的长期稳定性,导致延长的LSP在三个月内的性能。这些见解提供了具有从生物传感到光催化和其他光电器件的应用范围的应用程序的开发方向的有希望的方向。

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