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Symmetry Breaking-Induced Plasmonic Mode Splitting in Coupled Gold-Silver Alloy Nanodisk Array for Ultrasensitive RGB Colorimetric Biosensing

机译:用于超敏性RGB比色生物传感的耦合金银合金纳米磁仓阵列中对称断裂诱导的等离子体模式分裂

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We report the first observation of symmetry breaking-induced mode splitting in coupled gold-silver alloy nanodisk array (ANA). According to the plasmonic hybridization picture, the original localized surface plasmon resonance (LSPR) of individual nanodisk is split into a pair of high and low energy modes when placed in between a superstrate and a substrate. Although well studied in single silver nanoparticles, the high energy mode has been largely suppressed in gold nanoparticles, which nevertheless are more chemically robust and have superior environmental stability. Herein, we show that the high energy mode can be partially restored and precisely engineered to similar to 540 nm for silver-rich alloy nanodisk which has excellent environmental stability. However, peak broadening and red-shifting occur due to plasmonic dephasing when the nanodisk diameter increases. We next demonstrate that a far-field coupled ANA fabricated by low-cost nanosphere lithography can fully restore the high energy mode with electric field concentration extended into the superstrate, thereby imparting greater sensitivity to local refractive index changes. The high energy mode at 540 nm is of key importance for color change detection using low-cost RGB cameras/human vision and broadband light sources (e.g., the sun). The index sensitivity of ANA is the highest among existing plasmonic arrays (particles or holes) within a similar resonance wavelength region. We demonstrate colorimetric detection of sub-nanomolar and sub-monolayer biotin-streptavidin surface binding with a smartphone camera and a white light lamp. The high performance yet low-cost fabrication and detection technology could potentially result in affordable point-of-care biosensing technologies.
机译:我们报道了耦合金银合金纳米磁盘阵列(ANA)中对称断裂诱导模式分裂的首次观察。根据等离子体杂交图像,当放置在叠层和基板之间时,单个纳米磁盘的原始局部表面等离子体共振(LSPR)被分成一对高能的能量模式。虽然在单一银纳米粒子中进行了很好的研究,但在金纳米粒子中,高能量模式在很大程度上被抑制,但是,金纳米颗粒在金纳米颗粒中仍然是更具化学稳健的并且具有优异的环境稳定性。在此,我们表明,高能量模式可以部分地恢复并精确地设计成类似于具有优异的环境稳定性的银富合金纳米磁盘的540nm。然而,当纳米磁盘直径增加时,由于等离子体去除,发生峰值扩大和红色。下一步证明,由低成本纳米光刻制造的远场耦合ANA可以通过延伸到叠加物的电场集中来完全恢复高能的高能量模式,从而赋予对局部折射率的更大敏感性。使用低成本RGB摄像头/人类视觉和宽带光源(例如,太阳),540nm处的高能量模式对颜色变化检测的关键重要性。 ANA的指标敏感性是在类似谐振波长区域内的现有等离子体阵列(颗粒或孔)中的最高。我们证明了与智能手机相机和白光灯的亚纳摩和亚单层生物素 - 链霉抗生物素蛋白表面结合的比色检测。高性能但低成本的制造和检测技术可能会导致经济的护理点生物传染技术。

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