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      Ultrasmall Pb:Ag 2 S Quantum Dots with Uniform Particle Size and Bright Tunable Fluorescence in the NIR-II Window

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          Abstract

          <p class="first" id="d1535784e91">Ag2 S quantum dots (QDs) are well-known near-infrared fluorophores and have attracted great interest in biomedical labeling and imaging in the past years. However, their photoluminescence efficiency is hard to compete with Cd-, Pb-based QDs. The high Ag+ mobility in Ag2 S crystal, which causes plenty of cation deficiency and crystal defects, may be responsible mainly for the low photoluminescence quantum yield (PLQY) of Ag2 S QDs. Herein, a cation-doping strategy is presented via introducing a certain dosage of transition metal Pb2+ ions into Ag2 S nanocrystals to mitigate this intrinsic shortcoming. The Pb-doped Ag2 S QDs (designated as Pb:Ag2 S QDs) present a renovated crystal structure and significantly enhanced optical performance. Moreover, by simply adjusting the levels of Pb doping in the doped nanocrystals, Pb:Ag2 S QDs with bright emission (PLQY up to 30.2%) from 975 to 1242 nm can be prepared without altering the ultrasmall particle size (≈2.7-2.8 nm). Evidently, this cation-doping strategy facilitates both the renovation of crystal structure of Ag2 S QDs and modulation of their optical properties. </p>

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          Author and article information

          Contributors
          Journal
          Small
          Small
          Wiley
          16136810
          March 2018
          March 2018
          January 29 2018
          : 14
          : 11
          : 1703296
          Affiliations
          [1 ]Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education); College of Chemistry and Molecular Sciences; State Key Laboratory of Virology; The Institute for Advanced Studies; Wuhan Institute of Biotechnology; Wuhan University; Wuhan 430072 P. R. China
          Article
          10.1002/smll.201703296
          3fd7e290-1822-4875-94fa-c7cd30af782d
          © 2018

          http://doi.wiley.com/10.1002/tdm_license_1.1

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