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首页> 外文期刊>Nanotechnology >Luminol functionalized gold nanoparticles as colorimetric and chemiluminescent probes for visual, label free, highly sensitive and selective detection of minocycline
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Luminol functionalized gold nanoparticles as colorimetric and chemiluminescent probes for visual, label free, highly sensitive and selective detection of minocycline

机译:Luminol功能化的金纳米颗粒作为比色法和化学发光探针,用于视觉,无标记,高灵敏度和选择性检测米诺环素

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In this work, luminol functionalized gold nanoparticles (LuAuNPs) were used as colorimetric and chemiluminescent probes for visual, label free, sensitive and selective detection of minocycline (MC). The LuAuNPs were prepared by simple one-pot reduction of HAuCl_4 with luminol, which exhibited a good chemiluminescence (CL) activity owing to the presence of luminol molecules on their surface and surface plasmon resonance absorption. In the absence of MC, the color of LuAuNPs was wine red and their size was relatively small (~25 nm), which could react with silver nitrate, producing a strong CL emission. Upon the addition of MC at acidic buffer solutions, the electrostatic interaction between positively charged MC and negatively charged LuAuNPs caused the aggregation of LuAuNPs, generating a purple or blue color. Simultaneously, the aggregated LuAuNPs did not effectively react with silver nitrate, producing a weak CL emission. The signal change was linearly dependent on the logarithm of MC concentration in the range from 30 ng to 1.0 μg for colorimetric detection and from 10 ng to 1.0 μg for CL detection. With colorimetry, a detection limit of 22 ng was achieved, while the detection limit for CL detection modality was 9.7 ng.
机译:在这项工作中,将鲁米诺功能化的金纳米颗粒(LuAuNPs)用作比色和化学发光探针,用于视觉,无标记,灵敏和选择性的检测米诺环素(MC)。 LuAuNPs通过用鲁米诺简单地一锅还原HAuCl_4制备,由于其表面和表面等离振子共振吸收存在鲁米诺分子,因此显示出良好的化学发光(CL)活性。在没有MC的情况下,LuAuNPs的颜色为酒红色,尺寸较小(约25 nm),可以与硝酸银反应,产生很强的CL发射。在酸性缓冲溶液中添加MC后,带正电的MC和带负电的LuAuNP之间的静电相互作用导致LuAuNP聚集,生成紫色或蓝色。同时,聚集的LuAuNPs不能有效地与硝酸银反应,产生弱的CL发射。信号变化与MC浓度的对数线性相关,MC的对数在比色检测中为30 ng至1.0μg,在CL检测中为10 ng至1.0μg。用比色法可以达到22 ng的检出限,而CL检测方式的检出限是9.7 ng。

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