首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A novel electrochemiluminescence aptasensor for sensitive detection of kanamycin based on the synergistic enhancement effects between black phosphorus quantum dots and silver-decorated high-luminescence polydopamine nanospheres
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A novel electrochemiluminescence aptasensor for sensitive detection of kanamycin based on the synergistic enhancement effects between black phosphorus quantum dots and silver-decorated high-luminescence polydopamine nanospheres

机译:一种新型电化学发光适用于基于黑磷量子点和银装饰高发胺纳米球的协同增强效应的卡那霉素敏感检测

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摘要

Black phosphorus quantum dots (BPQDs), as a new type of nanomaterial, have excellent electrical and optical properties. In this work, an efficient monitoring method for kanamycin (KAN) was developed based on a sensitive and selective electrochemiluminescence (ECL) aptasensor. The construction of the ECL illuminant was based on BPQDs loaded on silver-nanoparticle modified high-luminescence polydopamine nanospheres (HLPNs@Ag). HLPNs possessed a large specific surface area and strong adhesion, which could support a great deal of BPQDs. Meanwhile, Ag NPs could accelerate the electron-transfer (ET) rate of the sensor and amplify the ECL signal of the BPQDs. Based on the synergistic enhancement effects between the above materials, the as-fabricated nanocomposites exhibited superior ECL performance. With the assistance of a KAN aptamer, the sensor can detect KAN sensitively and selectively. Under optimal conditions, the aptasensor could detect KAN in a wide linear range from 1 × 10~(-12) to 1.0 × 10~(-7) M with a detection limit of 1.7 × 10~(-13) M (S/N = 3). More importantly, this ultra-sensitive and rapid ECL aptasensor-based KAN detection system provided excellent applicability for the monitoring of environmental safety.
机译:黑磷量子点(BPQD)是一种新型的纳米材料,具有优异的电学和光学性能。在这项工作中,基于敏感和选择性电化学发光(ECL)适体传感器,开发了一种有效的卡那霉素(KAN)监测方法。ECL光源的构建基于载于银纳米粒子修饰的高发光聚多巴胺纳米球上的BPQD(HLPNs@Ag)HLPNs具有较大的比表面积和较强的附着力,可支持大量BPQD。同时,Ag纳米粒子可以加速传感器的电子转移速率,放大BPQD的ECL信号。基于上述材料之间的协同增强效应,所制备的纳米复合材料表现出优异的ECL性能。在KAN适配子的帮助下,传感器可以灵敏和选择性地检测KAN。在最佳条件下,该传感器可在1×10~(-12)到1.0×10~(-7)M的宽线性范围内检测KAN,检测限为1.7×10~(-13)M(S/N=3)。更重要的是,这种基于ECL aptasensor的超灵敏快速KAN检测系统为环境安全监测提供了极好的适用性。

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