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Electrochemiluminescence energy transfer-promoted ultrasensitive immunoassay using near-infrared-emitting CdSeTe/CdS/ZnS quantum dots and gold nanorods

机译:使用近红外发射CdSeTe / CdS / ZnS量子点和金纳米棒的电化学发光能量转移促进超灵敏免疫测定

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The marriage of energy transfer with electrochemiluminescence has produced a new technology named electrochemiluminescence energy transfer (ECL-ET), which can realize effective and sensitive detection of biomolecules. To obtain optimal ECL-ET efficiency, perfect energy overlapped donor/acceptor pair is of great importance. Herein, we present a sensitive ECL-ET based immunosensor for the detection of tumor markers, using energy tunable CdSeTe/CdS/ZnS double shell quantum dots (QDs) and gold nanorods (GNRs) as the donor and acceptor, respectively. Firstly a facile microwave-assisted strategy for the synthesis of green- to near-infrared-emitting CdSeTe/CdS/ZnS QDs with time- and component-tunable photoluminescence was proposed. And, on the basis of the adjustable optical properties of both CdSeTe/CdS/ZnS QDs and GNRs, excellent overlap between donor emission and acceptor absorption can be obtained to ensure effective ECL-ET quenching, thus improving the sensing sensitivity. This method represents a novel approach for versatile detection of biomolecules at low concentrations.
机译:能量转移与电化学发光的结合产生了一种称为电化学发光能量转移(ECL-ET)的新技术,可以实现生物分子的有效和灵敏检测。为了获得最佳的ECL-ET效率,完美的能量重叠的供体/受体对非常重要。在本文中,我们介绍了一种基于ECL-ET的灵敏免疫传感器,用于检测肿瘤标志物,分别使用能量可调的CdSeTe / CdS / ZnS双壳量子点(QD)和金纳米棒(GNR)作为供体和受体。首先,提出了一种简便的微波辅助策略,用于合成可发射绿色和近红外光的CdSeTe / CdS / ZnS量子点,具有时间和分量可调的光致发光特性。并且,基于CdSeTe / CdS / ZnS QD和GNR的可调节光学特性,可以在施主发射和受体吸收之间获得出色的重叠,以确保有效的ECL-ET猝灭,从而提高了感测灵敏度。该方法代表了一种低浓度生物分子的通用检测新方法。

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