2017
DOI: 10.1007/s41664-017-0013-9
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Imaging Analysis Based on Electrogenerated Chemiluminescence

Abstract: Electrochemiluminescence (ECL), also called electrogenerated chemiluminescence, is luminescence that is produced by chemical reactions triggered by electrochemical method. ECL imaging is a novel imaging technique, which can simultaneously provide two kinds of signals of both electrochemistry and optical image. Over the past two decades, ECL imaging has been not only a powerful tool for investigating the fundamental scientific questions such as ECL mechanisms and reaction kinetics, but also a versatile analytic… Show more

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Cited by 42 publications
(20 citation statements)
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“…Because no external light illumination is required to generate ECL emission, ECL has unique advantages, such as low background and high sensitivity, et al It has manifested itself to be a powerful transduction signal for the determination of small biomolecules, DNA and protein biomarkers in biosensing and clinical diagnostics ( Doeven et al, 2014 ; Wu et al, 2014 ; Lim et al, 2016 ; Bist et al, 2017 ; Ji et al, 2017 ; Yang et al, 2018 ; Zhou et al, 2018 ; Zhang et al, 2019a ; Jones et al, 2020 ). Moreover, ECL has recently emerged as a useful surface analysis technology because of its intrinsic surface-confined and surface-sensitive nature ( Guo et al, 2017 ; Zhang et al, 2019b ; Zanut et al, 2019 ; Ma et al, 2020 ). Compared with the conventional intensity-based ECL measurement of the entire electrochemical ensembles, ECL imaging can function as a diagnostic tool to elucidate the relationship between the topography/structures and electron transfer properties of electrode surface with spatial resolution ( Pantano and Kuhr, 1993 ; Hopper and Kuhr, 1994 ).…”
Section: Introductionmentioning
confidence: 99%
“…Because no external light illumination is required to generate ECL emission, ECL has unique advantages, such as low background and high sensitivity, et al It has manifested itself to be a powerful transduction signal for the determination of small biomolecules, DNA and protein biomarkers in biosensing and clinical diagnostics ( Doeven et al, 2014 ; Wu et al, 2014 ; Lim et al, 2016 ; Bist et al, 2017 ; Ji et al, 2017 ; Yang et al, 2018 ; Zhou et al, 2018 ; Zhang et al, 2019a ; Jones et al, 2020 ). Moreover, ECL has recently emerged as a useful surface analysis technology because of its intrinsic surface-confined and surface-sensitive nature ( Guo et al, 2017 ; Zhang et al, 2019b ; Zanut et al, 2019 ; Ma et al, 2020 ). Compared with the conventional intensity-based ECL measurement of the entire electrochemical ensembles, ECL imaging can function as a diagnostic tool to elucidate the relationship between the topography/structures and electron transfer properties of electrode surface with spatial resolution ( Pantano and Kuhr, 1993 ; Hopper and Kuhr, 1994 ).…”
Section: Introductionmentioning
confidence: 99%
“…Important applications of ECL lie in electroanalytical biosensing [2,3], in which antibodies or aptamers are labeled with luminophores to enable a large variety of different assays. In addition, ECL has been extensively investigated for imaging [4,5] as well as light generation [6].…”
Section: Introductionmentioning
confidence: 99%
“…A * k 4 → A + h , Electronic supplementary material The online version of this article (https ://doi.org/10.1007/s4166 4-019-00094 -z) contains supplementary material, which is available to authorized users.…”
Section: Introductionmentioning
confidence: 99%
“…However, owing to the low efficiency of ECL, the imaging readout did not specifically seek for image resolution but rather for biomarker detection sensitivity. Since they only use electrochemistry as a mean to trigger the luminescence event, imaging-based bioassays are not discussed here; they are comprehensively reviewed [47,198]. The imaging of surface adsorbates by ECL microscopy was proposed in several studies where the fluorophore is either the adsorbate or present in solution.…”
Section: [531] Adsorbates and Samsmentioning
confidence: 99%