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一种基于金属-绝缘体-金属波导的表面等离子体激元折射率传感器,用于检测水中的纳米塑料。

A metal-insulator-metal waveguide-based plasmonic refractive index sensor for the detection of nanoplastics in water.

作者信息

Guchhait Shyamal, Chatterjee Subhasri, Chakravarty Tapas, Ghosh Nirmalya

机构信息

Indian Institute of Science Education and Research Kolkata, Mohanpur, India.

TCS Research, Kolkata, India.

出版信息

Sci Rep. 2024 Sep 14;14(1):21495. doi: 10.1038/s41598-024-71874-6.

Abstract

A metal-insulator-metal waveguide-based square-ring resonator plasmonic refractive index sensor is designed and optimized for achieving high sensitivity. The sensitivity of the sensor critically depends on the physical dimension and the geometrical parameters of the resonator. Systematic studies on varying geometrical parameters of the resonator reveal that the sensitivity increases with the number of concentric square-rings. Moreover, the full-width-half-maxima of the resonance line is found to increase with the number of square rings. Importantly, variations in the coupling length affect the transmitted intensity as well as the full-width-half-maxima of the resonance spectra in a characteristic fashion. An initial exploration of the optimized sensor for nanoplastic detection for a range of volume fractions 0.15625-0.625% shows a systematic linear increase in the resonance wavelength with changing refractive index of the surrounding medium. This offers the possibility of ultrasensitive detection of extremely small change in the local refractive index as the signature of a minute level of plastic contamination. This was achieved by using an optimized sensor design with a sensitivity of 2700 nm/RIU and a full-width-half-maxima of 333 nm. Results presented in the paper demonstrate the considerable promise of the proposed plasmonic refractive index sensor towards nanoplastic detection.

摘要

设计并优化了一种基于金属-绝缘体-金属波导的方形环谐振器等离子体折射率传感器,以实现高灵敏度。该传感器的灵敏度关键取决于谐振器的物理尺寸和几何参数。对谐振器几何参数变化的系统研究表明,灵敏度随同心方形环的数量增加而提高。此外,发现谐振线的半高宽随方形环的数量增加而增大。重要的是,耦合长度的变化以一种独特的方式影响透射强度以及谐振光谱的半高宽。对优化后的传感器在0.15625 - 0.625%体积分数范围内进行纳米塑料检测的初步探索表明,随着周围介质折射率的变化,谐振波长呈系统线性增加。这为超灵敏检测局部折射率的极小变化提供了可能性,作为微量塑料污染的特征。这是通过使用灵敏度为2700 nm/RIU且半高宽为333 nm的优化传感器设计实现的。论文中给出的结果表明,所提出的等离子体折射率传感器在纳米塑料检测方面具有很大的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e69a/11401865/98cf4e6e646e/41598_2024_71874_Fig1_HTML.jpg

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