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N-doped carbon dots with tunable emission for multifaceted application: solvatochromism, moisture sensing, pH sensing, and solid state multicolor lighting

Authors
Moniruzzaman, MdKim, Jongsung
Issue Date
15-Sep-2019
Publisher
ELSEVIER SCIENCE SA
Keywords
N-doped carbon dots; High quantum yield; Solvatochromism; H2O detection in organic solvents; pH sensing; Multicolor N-GCD/polymer film
Citation
SENSORS AND ACTUATORS B-CHEMICAL, v.295, pp.12 - 21
Journal Title
SENSORS AND ACTUATORS B-CHEMICAL
Volume
295
Start Page
12
End Page
21
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/1142
DOI
10.1016/j.snb.2019.05.035
ISSN
0925-4005
Abstract
Novel N-doped green-emitting carbon dots (N-GCDs) that were responsive to various external stimuli and had high quantum yields (QYs) for multifaceted applications were synthesized from beta-resorcylic acid and ethylenediamine using a hydrothermal process followed by a reflux method. The QYs of the N-GCDs were in the range of 17.36%-48.4% and were associated with different photoluminescent color emission in different solvents. Interestingly, the as-synthesized N-GCDs exhibited strict solvent polarity-dependent switchability (solvatochromism) and multicolor excitation-wavelength-independent emission in different solvents. Sensing of an analyte based on the switching of the photoluminescence (PL) emission maxima (lambda(max)) is always preferred over that based on fluorescence quenching to avoid complexity and confusion regarding the initial fluorescence intensity (I-0) and thus make the sensing process simple, rapid, ordered, and reliable. The N-GCDs exhibited blue emission in low-polarity organic solvents, but with the increase of the trace water content in the system, the PL emission peak gradually shifted to a higher wavelength (bathochromic shift) at a single-wavelength excitation. Thus, the N-GCDs are sensitive visual probes for the fluorescence detection of the trace water content in organic solvents without sophisticated processes. They also indicate the pH-response behavior. When the pH decreased from 7.6 to 2.4, the fluorescence emission intensity decreased, with a particularly good linear relationship (R-2 = 0.990) in the range of 3.8-6.2. Moreover, the polarity-dependent-emission property was observed in the solid state polymer matrices. Multicolor-emissive N-GCD/polymer films were prepared by integrating N-GCDs with the polymer matrices of different polarity, demonstrating the application of carbon dots for solid-state lighting.
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Moniruzzaman, Mohammad
Engineering (화공생명배터리공학부)
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