Plasmonic gold mushroom arrays with refractive index sensing figures of merit approaching the theoretical limit

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Abstract

Localized surface plasmon resonance (LSPR)-based sensing has found wide applications in medical diagnosis, food safety regulation and environmental monitoring. Compared with commercial propagating surface plasmon resonance (PSPR)-based sensors, LSPR ones are simple, cost-effective and suitable for measuring local refractive index changes. However, the figure of merit (FOM) values of LSPR sensors are generally 1-2 orders of magnitude smaller than those of PSPR ones, preventing the widespread use of LSPR sensors. Here we describe an array of submicrometer gold mushrooms with a FOM reaching ∼108, which is comparable to the theoretically predicted upper limit for standard PSPR sensors. Such a high FOM arises from the interference between Wood's anomaly and the LSPRs. We further demonstrate the array as a biosensor for detecting cytochrome c and alpha-fetoprotein, with their detection limits down to 200 pM and 15 ng ml -1, respectively, suggesting that the array is a promising candidate for label-free biomedical sensing. © 2013 Macmillan Publishers Limited.

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Shen, Y., Zhou, J., Liu, T., Tao, Y., Jiang, R., Liu, M., … Wang, J. (2013). Plasmonic gold mushroom arrays with refractive index sensing figures of merit approaching the theoretical limit. Nature Communications, 4. https://doi.org/10.1038/ncomms3381

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