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Construction of an NAND logic gate based on molecularly imprinted dual-emission quantum dot composites for the detection of antibiotics

机译:基于分子印迹双发射量子点复合材料的NAND逻辑门的构建,用于检测抗生素

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In this study, an NAND molecular logic gate based on molecularly imprinted functionalized quantum dot (QDs@MIPs) composites was constructed for the simultaneous detection of streptomycin sulphate (SS) and kanamycin sulfate (KS). To achieve this goal, two kinds of CdTe QDs with green (QDG) and red emission (QDR) colours were prepared. Then, QDG@MIPs were used for the detection of SS in the concentration range of 3.00–118 μM, and the limit of detection (LOD) was 0.22 μM. QDR@MIPs were used for the estimation of KS in the concentration range of 3.00–105 μM, and the limit of detection (LOD) was 0.24 μM. The molecularly imprinted dual-emission quantum dot composites (DEQDs@MIPs) exhibited two emission peaks at 525 nm and 625 nm with excitation at 360 nm. DEQDs@MIPs were used as fluorescent probes for the rapid and simultaneous detection of SS and KS. In this system, the input of SS and KS and the output of the fluorescence value coincided with the NAND logic gate; thus, the NAND molecular logic gate can be constructed using DEQDs@MIPs for the simultaneous detection of SS and KS.
机译:在这项研究中,基于分子印迹功能化量子点(QDs @ MIPs)复合材料的NAND分子逻辑门可用于同时检测硫酸链霉素(SS)和硫酸卡那霉素(KS)。为了实现此目标,制备了具有绿色(QDG)和红色发射(QDR)颜色的两种CdTe量子点。然后,使用QDG @ MIPs在3.00–118μM的浓度范围内检测SS,检测限(LOD)为0.22μM。 QDR @ MIP用于在3.00–105μM的浓度范围内估计KS,检测限(LOD)为0.24μM。分子印迹双发射量子点复合材料(DEQDs @ MIPs)在525 nm和625 nm处出现两个发射峰,并在360 nm处激发。 DEQDs @ MIPs被用作荧光探针,用于快速,同时检测SS和KS。在该系统中,SS和KS的输入以及荧光值的输出与NAND逻辑门重合。因此,可以使用DEQDs @ MIP构造NAND分子逻辑门,以同时检测SS和KS。

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