UV-induced, nonenzymatic, H2O2-free colorimetric detection of Dopamine using MXene-based quasi-quantum dots

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초록

This study presents a UV-activated, nonenzymatic, and hydrogen peroxide-independent colorimetric sensing strategy for the highly sensitive and selective detection of dopamine (DA), utilizing MXene-derived quasi-quantum dots (MQQDs) as photoactive nanozymes. The MQQDs demonstrate pronounced UV-activated oxidasemimetic catalytic activity, facilitating the oxidation of 3,3 ',5,5 '-tetramethylbenzidine (TMB) into its blue oxidized form (oxTMB) in the absence of H2O2.Upon the introduction of dopamine (DA), the absorbance intensity of oxTMB at 652 nm decreases progressively with increasing DA concentration. This attenuation is attributed to the redox interplay between DA and the photoexcited MQQDs, wherein DA acts as an electron donor, reducing oxTMB back to its colorless TMB form and thereby inhibiting the oxidation reaction. This electron-transfer-mediated inhibition mechanism enables quantitative colorimetric detection of DA with a detection limit of 65.4 nM. Spectroscopic analysis and kinetic fitting confirm the UV-triggered oxidase-mimetic behavior of MQQDs following Michaelis-Menten kinetics. The developed H2O2-free photoenzymatic platform offers a facile, stable, and environmentally benign route for DA quantification, with promising applicability in point-of-care diagnostics and neurochemical sensing.

키워드

MXene quasi quantum dotsNanozymeOxidase mimic activityColorimetric sensorDASTABILITY
제목
UV-induced, nonenzymatic, H2O2-free colorimetric detection of Dopamine using MXene-based quasi-quantum dots
저자
Govindaraju, RajapriyaKim, Jongsung
DOI
10.1016/j.flatc.2025.100966
발행일
2025-11
유형
Article
저널명
FLATCHEM
54