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High-Efficient Energy Funneling Based on Electrochemiluminescence Resonance Energy Transfer in Graded-Gap Quantum Dots Bilayers for Immunoassay

机译:基于电化学发光共振能量转移的梯度间隙量子点双层高效能量漏斗用于免疫分析

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A surprising electrochemiluminescence (ECL) enhancement effect in graded-gap CdSeTe@ZnS-SiO_2 quantum dot (QD) bilayers was observed and used to create an ultrasensitive immunoassay. CdSeTe@ZnS-SiO_2 QDs of two different sizes were used as a donor-acceptor pair, owing to their tunable energy and low biotoxicity. The graded-gap CdSeTe@ZnS-SiO_2 QD bilayers were fabricated by layer-by-layer assembly of differently sized CdSeTe@ZnS-SiO_2 QDs on a glutaraldehyde-activated electrode. Benefiting from a short interlayer distance and perfect spectral overlap in the graded-gap QD bilayers, highly efficient ECL resonance energy transfer (ECLRET)-based energy funneling was observed, wherein excitons from trapped states could be effectively recycled. Consequently, the observed ECL enhancement for the bilayers was more than four times greater than that observed for reference samples. The graded-gap QD bilayers were utilized in an ECL biosensor for the detection of carcinoembryonic antigen (CEA). The proposed method featured a detection limit of 0.4 pg mL~(-1) CEA with a linear calibration range from 1 pg mL~(-1) to 200 ng mL~(-1). This method represents a novel approach for versatile detection of biomolecules in research and clinical applications.
机译:观察到了梯度间隙CdSeTe @ ZnS-SiO_2量子点(QD)双层中令人惊讶的电化学发光(ECL)增强作用,并用于创建超灵敏的免疫测定。两种不同大小的CdSeTe @ ZnS-SiO_2量子点由于其可调节的能量和低的生物毒性而被用作供体-受体对。通过在戊二醛活化电极上逐层组装不同尺寸的CdSeTe @ ZnS-SiO_2 QDs来制造渐变间隙CdSeTe @ ZnS-SiO_2 QD双层膜。受益于梯度间隙QD双层中较短的层间距离和完美的光谱重叠,观察到了基于ECL共振能量转移(ECLRET)的高效能量漏斗,可以有效地回收俘获态的激子。因此,观察到的双层的ECL增强是参考样品观察到的ECL增强的四倍以上。梯度间隙QD双层用于ECL生物传感器中,用于检测癌胚抗原(CEA)。该方法的特征在于CEA的检出限为0.4 pg mL〜(-1),线性校准范围为1 pg mL〜(-1)至200 ng mL〜(-1)。该方法代表了一种在研究和临床应用中通用检测生物分子的新颖方法。

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