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首页> 外文期刊>ACS nano >Controlled assembly and plasmonic properties of asymmetric core-satellite nanoassemblies
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Controlled assembly and plasmonic properties of asymmetric core-satellite nanoassemblies

机译:非对称核-卫星纳米组件的受控组装和等离子体性能

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The assembly of noble metal nanoparticles offers an appealing means to control and enhance the plasmonic properties of nanostructures. However, making nanoassemblies with easily modifiable gap distances with high efficiency has been challenging. Here, we report a novel strategy to assemble gold nanoparticles (AuNPs) into Janus-type asymmetric core-satellite nanostructures. Markedly different desorption efficiency between large and small AuNPs in ethanol allows us to prepare the asymmetric core-satellite nanoassemblies in a dispersed colloidal state with near 100% purity. The resulting nanoassemblies have well-defined structures in which a core AuNP (51 nm) is covered by an average of 13 ± 3 satellite AuNPs (13 nm) with part of the core surfaces left unoccupied. Strong surface plasmon coupling is observed from these nanoassemblies as a result of the close proximity between the core and the satellites, which appears significantly red-shifted from the surface plasmon resonance frequencies of the constituting nanoparticles. The dependence of the surface plasmon coupling on a gap distance of less than 3 nm is systematically investigated by varying the length of the alkanedithiol linkers. The asymmetric core-satellite nanoassemblies also serve as an excellent surface-enhanced Raman scattering substrate with an enhancement factor of ~10 ~6. Finally, we demonstrate that the presented assembly method is extendible to the preparation of compositionally heterogeneous core-satellite nanoassemblies.
机译:贵金属纳米颗粒的组装提供了一种吸引人的手段来控制和增强纳米结构的等离子体性能。然而,高效地制造具有容易改变的间隙距离的纳米组件一直是挑战。在这里,我们报告一种新颖的策略,将金纳米颗粒(AuNPs)组装成Janus型不对称核心卫星纳米结构。乙醇中大和小的AuNP之间的解吸效率明显不同,这使我们能够以接近100%的纯度制备分散胶体状态的不对称核-卫星纳米组装体。所得的纳米组件具有定义明确的结构,其中核心AuNP(51 nm)被平均13±3个卫星AuNPs(13 nm)覆盖,部分核心表面未被占用。由于核心和卫星之间的紧密接近,从这些纳米组件中观察到了强烈的表面等离激元耦合,这似乎与构成纳米颗粒的表面等离振子共振频率发生了红移。通过改变链烷二硫醇接头的长度,系统地研究了表面等离子体激元耦合对小于3 nm的间隙距离的依赖性。不对称的核-卫星纳米组装体还可以作为出色的表面增强拉曼散射基底,其增强因子约为10〜6。最后,我们证明了提出的组装方法可扩展到组成异质核-卫星纳米组装的制备。

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