Quantitative Surface-enhanced Raman Measurements with Embedded Internal Reference
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Analytical applications of SERS are often more associated with qualitative than quantitative analysis, because of the difficulty in obtaining quantitative SERS results. In this paper we introduce a new strategy to quantitatively measure the SERS signals of analytes based on Au-core/Ag-shell nanoparticles with embedded 4-aminothiophenol as the internal reference. Successful detections of two analytes, Toluidine Blue O in aqueous solution (detection limit of 0.1 μM) and melamine in milk (detection limit of ~5 μM), are demonstrated. The improvement in the linear fitting illustrates that the use of internal reference significantly improves the accuracy of the quantitative SERS measurements. The successful detection of melamine in milk illustrates the versatility of this detection scheme for a wide variety of analytes.
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Liang J, Peng C, Li P, Ye Q, Wang Y, Yi Y Bioinorg Chem Appl. 2021; 2021:8180154.
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An all-in-one magnetic SERS nanosensor for ratiometric detection of Escherichia coli in foods.
Weng Y, Hu X, Jiang L, Shi Q, Wei X Anal Bioanal Chem. 2021; 413(21):5419-5426.
PMID: 34322738 DOI: 10.1007/s00216-021-03521-2.
Nam W, Zhao Y, Song J, Safiabadi Tali S, Kang S, Zhu W J Phys Chem Lett. 2020; 11(22):9543-9551.
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Pham X, Hahm E, Huynh K, Son B, Kim H, Jeong D Int J Mol Sci. 2019; 20(19).
PMID: 31569479 PMC: 6801479. DOI: 10.3390/ijms20194841.