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Bioapplication of plasmonic nanosheet

机译:等离子体纳米片的生物应用

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In this paper, we present our recent progress to fabricate "plasmonic silver nanosheet" for highly sensitive biosensing devices. Uniformly sized silver nanoparticles (d = 4.8 nm ±0.1 nm) are deposited on the substrate as a homogeneous nanosheet composed of two dimensional crystalline domains, in which the distance between silver cores is accurately controlled by the thickness of the capping organic molecules (myristate, alkanethiols). The silver nanosheet exhibits a significant shift of plasmon absorption band to the longer wavelength (ca. 50 nm) from the position in dispersion solution, while the peak width was rather reduced (sharpened) as an evidence of homogeneous coupling of local plasmons. We also found the unique coupling between propagating surface plasmon on gold thin film and localized surface plasmon on silver nanosheet. This flexible, transferable nanosheet, which can trap and transport bulk light at nano-interface, promises new application in the field of bio- and organic devices.
机译:在本文中,我们介绍了我们在制造用于高灵敏度生物传感设备的“等离激元银纳米片”方面的最新进展。尺寸均匀的银纳米颗粒(d = 4.8 nm±0.1 nm)作为由二维晶域组成的均匀纳米片沉积在基板上,其中银核之间的距离由封端有机分子(肉豆蔻酸盐,烷硫醇)。银纳米片表现出从分散溶液中的位置到更长波长(约50 nm)的等离激元吸收带的明显移动,而峰宽却相当减小(变尖),作为局部等离激元的均匀耦合的证据。我们还发现了金薄膜上传播的表面等离子体激元与银纳米片上的局部表面等离子体激元之间的独特耦合。这种柔性的,可转移的纳米片可以在纳米界面捕获和传输大量的光,有望在生物和有机设备领域获得新的应用。

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