首页|金纳米粒子增强表面等离子体共振传感

金纳米粒子增强表面等离子体共振传感

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为探究提高传感灵敏度的物理机制,提出一种金纳米粒子增强表面等离子体共振的D形光子晶体光纤传感结构,在抛磨面涂覆金膜,并在金膜表面修饰金纳米粒子.金纳米粒子的自由电荷与金属膜中的感应电荷相互作用提高了表面等离子体共振强度及其灵敏度.利用有限元法结合各向异性完美匹配层,数值研究结构参数对传感性能的影响.当金纳米粒子直径为12 nm、金纳米粒子相对间距为粒子直径3.2倍、金膜厚度为45 nm、纤芯到抛磨面的距离为3.0 μm、空气孔间距为 2.0 μm、外层大空气孔直径为孔间距的 3/4,以及内层小空气孔直径为大空气孔直径的 4/5时:在 1.370~1.385折射率范围内,折射率灵敏度为 6240 nm/RIU,线性度为 0.97;在 1.385~1.400折射率范围内,折射率灵敏度为13640 nm/RIU,线性度为0.99;在1.370~1.400折射率范围内,平均灵敏度为9940 nm/RIU,是未修饰金纳米粒子时的1.27倍.所提传感机制及结构在生物分子检测等领域具有研究和应用价值.
Surface Plasmon Resonance Sensing Enhancement Using Gold Nanoparticles
This study proposes a D-shaped photonic crystal-fiber sensing structure for exploring the physical mechanisms of sensitivity improvement.The structure is based on surface plasmon resonance enhanced using gold nanoparticles.The gold particles are modified on the surface of a gold film coated on the D-shaped polished surface.The free charge on the gold nanoparticles interacts with the induced charge in the metal film,improving the intensity and sensitivity of surface plasmon resonance.The effects of the structural parameters on the sensing performance are investigated numerically using the finite element method assuming an anisotropically perfect matching layer.The D-shaped photonic crystal fiber/Au film/gold nanoparticle sensor with a gold nanoparticle diameter of 12 nm,a relative spacing between the gold nanoparticles of 3.2×the nanoparticle diameter,a gold film thickness of 45 nm,a distance between the fiber core and polishing surface of 3.0 μm,an air hole spacing of 2.0 μm,a large air hole diameter in the outer layer of 0.75×the air hole spacing,and a small air hole diameter in the inner layer of 0.80×the large air hole diameter,the linearity is 0.97 and the refractive index sensitivity is 6240 nm/RIU in the refractive index range 1.370‒1.385.The linearity is 0.99 and the refractive index sensitivity is 13640 nm/RIU in the refractive index range 1.385‒1.400.In the refractive index range 1.370‒1.400,the average refractive index sensitivity reaches 9940 nm/RIU,1.27×that of a D-shaped photonic crystal fiber/Au film sensor.The proposed sensing mechanism and structure are expected to assist research and applications in areas such as biomolecular detection.

photonic crystal fibersurface plasmon resonancelocal surface plasmon resonancebiosensor

施伟华、王华晋、上官铭宇

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南京邮电大学电子与光学工程学院、柔性电子(未来技术)学院,江苏 南京 210023

光子晶体光纤 表面等离子体共振 局域表面等离子体共振 生物传感

国家自然科学基金江苏省自然科学基金

6157123720221330

2024

激光与光电子学进展
中国科学院上海光学精密机械研究所

激光与光电子学进展

CSTPCD北大核心
影响因子:1.153
ISSN:1006-4125
年,卷(期):2024.61(13)