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Chiral MoS2 Quantum Dots: Dual‐Mode Detection Approaches for Avian Influenza Viruses

机译:手性MoS2量子点:禽流感病毒的双模式检测方法。

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摘要

Molybdenum disulfide (MoS2), a type of transition metal dichalcogenide material, has emerged as an important class among 2D systems. When 2D MoS2 materials are reduced to 0D quantum dots (QDs), they introduce new optical properties that point to several potential technological advantages in electronic, magnetic, optical, and catalytic properties. In this study, a simple way to produce chiral MoS2 QDs from MoS2 nanopowder is presented using l(+)‐ascorbic acid as a reducing agent. The calculated quantum yield of QDs is 11.06%. Experimental results reveal that the size of QDs is uniformly monodispersed (2–3 nm) and have a blue emissive fluorescence peak and circular dichroism (CD) peak located at 420 and 330 nm, respectively. Furthermore, a dual‐mode detection system based on fluorescence and chirality is performed using as‐synthesized MoS2 QDs, where QDs are conjugated with anti‐hemagglutinin antibodies of avian influenza virus and made into an immunobridge in the presence of target virus and anti‐neuraminidase antibodies conjugated magnetic nanoparticles (MNPs). The photoluminescence and CD spectra of unconjugated QDs after separated magnetochirofluorescent (MNPs‐QDs) nanohybrids by external magnets enables influenza virus A (H5N1) detection with the limit of detection value of 7.35 and 80.92 pg mL?1, respectively.
机译:二硫化钼(MoS2)是一种过渡金属二卤化金属材料,已成为2D系统中的重要一类。当将2D MoS2材料还原为0D量子点(QD)时,它们会引入新的光学特性,这些新的光学特性指出了电子,磁性,光学和催化特性方面的若干潜在技术优势。在这项研究中,提出了一种使用l(+)-抗坏血酸作为还原剂,从MoS2纳米粉中生产手性MoS2 QD的简单方法。计算出的量子点量子产率为11.06%。实验结果表明,量子点的大小是均匀分散的(2-3 nm),并且分别在420和330 nm处具有蓝色的发射荧光峰和圆二色性(CD)峰。此外,使用合成的MoS2 QD进行基于荧光和手性的双模式检测系统,其中QD与禽流感病毒的抗血凝素抗体结合,并在存在目标病毒和抗神经氨酸酶的情况下制成免疫桥抗体结合了磁性纳米颗粒(MNP)。通过外部磁体分离磁纳米荧光(MNPs-QDs)纳米杂化体后未结合的QD的光致发光和CD光谱能够检测A流感病毒(H5N1),其检测值分别为7.35和80.92 pg mL?1。

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