4.6 Article

A removing resonance fluorescence method for light scattering spectroscopy

期刊

CHEMICAL PHYSICS LETTERS
卷 787, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.cplett.2021.139244

关键词

Resonance light scattering; Resonance fluorescence; Quantum dots; Fluorescent sensor

资金

  1. Science and Technology Plan of Sichuan Province, China [21RKX0358]
  2. national college students inno-vation and entrepreneurship training program of China [s202110621040]

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In this study, a technique called removing resonance fluorescence (RRF) is introduced for accurate separation of resonance fluorescence and scattered light spectra in light scattering spectroscopy (RLS). The use of MPA-capped quantum dots (QDs) to detect Hg2+ illustrates the implementation of this method. The study provides a useful tool for expanding the application range of RLS.
Herein, we report a removing resonance fluorescence (RRF) technique for light scattering spectroscopy (RLS), which takes full advantage of the differences between resonance fluorescence (RF) and scattered light in different wavelength regions to achieve an accurate separation of them. Then MPA-capped quantum dots (QDs) sensing Hg2+ is employed as an example to introduce the implementation of this method. The results indicate that Hg2+ ions destroy the stability of QDs, causing them to agglomerate, which might contribute to fluorescence quenching of QDs. Our study provides a useful tool for separating RF and scattered spectra, which expands the application range of RLS.

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