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    Analytical applications of tris(2,2′-bipyridyl)ruthenium(III) as a chemiluminescent reagent
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    H. J. Peresie and J. A. Stanko, J. Chem. Soc. D, 1970, 1674 DOI: 10.1039/C29700001674
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    Electrochemiluminescence or electrogenerated chemiluminescence (ECL) is a phenomenon where light emission arises from a high energy electron transfer reaction between electrogenerated species. Fundamental aspects of ECL and its analytical applications are described.
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    Electrochemiluminescence technology is widely used in the highly sensitive detection of environmental pollutants, biologically active molecules, nucleic acids and tumor markers based on its high sensitivity, good selectivity and excellent stability. Quantum dots have become an ideal electrochemiluminescence luminescent material due to their amazing optical properties, good water solubility and good electrochemiluminescence monochromaticity. The further research on signal transduction strategies of electrochemiluminescence sensors based on II-VI quantum dots on will contribute to the construction of advanced sensors. Therefore, this review summarizes the electrochemiluminescence mechanism and electrochemiluminescence sensing signal transduction strategies based on II-VI quantum dots. Three electrochemiluminescence sensing mode (signal-off transduction strategy, signal-on transduction strategy and ratiometric transduction strategy) are introduced emphatically. Finally, the challenges and future development directions faced by II-VI quantum dots based- electrochemiluminescence sensors are discussed according to the development status of the II-VI quantum dot electrochemiluminescence sensing signal transduction strategy and its application in electrochemiluminescence sensors.
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    In this paper,the recent developments in chemiluminescence sensors were reviewed.Most of the literature reviewed dates from 1999.The content included design of chemiluminescence sensor,enzyme-based chemiluminescence biosensor,tissue-based chemiluminescence sensor,chemiluminescent immunosensor,ctaluminescence gas sensor,molecular imprinting-based chemiluminescence sensor and chemiluminescence sensor with chemiluminescence reaction as recognition reaction.The future of the chemiluminescence sensor was also forecasted.
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    Electrochemiluminescence exhibits the merits of both luminescence and electrochemistry analysis, and has been extensively employed in biosensors. Quantum dots are considered one of the three main kinds of electrochemiluminescence luminophores due to their unique properties. This paper briefly reviews the classification and signal amplification technology of quantum dots based electrochemiluminescence immunosensors. Future research trends are also suggested.
    Electrochemiluminescence
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    Abstract An electrochemiluminescence inhibition method has been developed for the determination of bisphenol A based on studying the inhibition phenomena of bisphenol A to the electrochemiluminescence of luminol. There is a linear relationship between the inhibitive intensity of electrochemiluminescence and the concentration of bisphenol A in the range of 4.4 × 10 −7 to 2.2 × 10 −5 mol/l. The method was successfully applied to the determination of bisphenol A in hot water in contact with commercially available table‐water bottle samples.
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