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Silicon quantum dot involved luminol chemiluminescence and its sensitive detection of dopamine

机译:硅量子点涉及鲁米诺化学发光及其对多巴胺的灵敏检测

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Water dispersible silicon quantum dots (SiQDs) were synthesized by in situ growth under microwave irradiation. The prepared SiQDs were characterized by transmission electron microscopy, FT-IR, and fluorescence spectroscopy. Under neutral conditions, a weak chemiluminescence (CL) signal was obtained in luminol/K2S2O8 and SiQDs/K2S2O8 mixed solutions, while a strong CL signal was obtained in the presence of luminol, K2S2O8, and SiQDs. The CL spectra revealed that two luminophores were involved in the present CL system, and the possible CL mechanism was proposed. Dopamine (DA) exhibited a significantly inhibiting effect on the CL signal of the luminol/K2S2O8/SiQD system, and the inhibited CL intensities were proportional to the logarithm of DA concentration in the range of 1.0 × 10?9 to 5.0 × 10?7 mol L?1 with a detection limit of 8.6 × 10?10 mol L?1. The proposed CL system can be successfully applied in the sensitive detection of trace levels of DA in real samples.
机译:通过在微波辐射下原位生长合成了水分散性硅量子点(SiQD)。通过透射电子显微镜,FT-IR和荧光光谱对制备的SiQD进行表征。在中性条件下,在luminol / K2S2O8和SiQDs / K2S2O8混合溶液中获得弱的化学发光(CL)信号,而在存在luminol,K2S2O8和SiQDs的情况下获得强CL信号。 CL光谱揭示了在当前的CL系统中涉及两个发光体,并提出了可能的CL机制。多巴胺(DA)对luminol / K2S2O8 / SiQD系统的CL信号表现出明显的抑制作用,抑制的CL强度与DA浓度的对数成正比,在1.0×10?9至5.0×10?7的范围内mol L?1,检测限为8.6×10?10 mol L?1。所提出的CL系统可以成功地应用于实际样品中痕量DA的灵敏检测。

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