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Replacement of Cetyltrimethylammoniumbromide Bilayer on Gold Nanorod by Alkanethiol Crosslinker for Enhanced Plasmon Resonance Sensitivity

机译:烷基硫醇交联剂代替金纳米棒上的十六烷基三甲基溴化铵双层膜以增强等离子体共振灵敏度。

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摘要

Surface modification of gold nanorods (GNRs) is often problematic due to tightly packed cetyltrimethylammoniumbromide (CTAB) bilayer. Herein, we performed a double phase transfer ligand exchange to achieve displacement of CTAB on nanorods. During the removal, 11-mercaptoundecanoic acid (MUDA) crosslinker is simultaneously assembled on nanorod surfaces to prevent aggregation. The resulting MUDA-GNRs retain the shape and position of plasmon peaks similar to CTAB-capped GNRs. The introduction of carboxyl groups allows covalent conjugation of biological receptors in a facile fashion to construct a robust, label-free biosensor based on localized surface plasmon resonance (LSPR) transduction of biomolecular interaction. More importantly, smaller MUDA layer on the GNRs reduces the distance of target binding to the plasmonic nanostructure interface, leading to a significant enhancement in LSPR assay sensitivity and specificity. Compared to modification using conventional electropolymer adsorption, MUDA-coated gold nanosensor exhibits five times lower detection limit for cardiac troponin I assay with a high selectivity.
机译:由于紧密堆积的十六烷基三甲基溴化铵(CTAB)双层,金纳米棒(GNRs)的表面改性通常存在问题。在这里,我们进行了双相转移配体交换,以实现CTAB在纳米棒上的置换。在去除过程中,同时在纳米棒表面组装11-巯基癸酸(MUDA)交联剂,以防止聚集。所得的MUDA-GNR保留了类似于CTAB封端的GNR的等离激元峰的形状和位置。羧基的引入允许以容易的方式共价偶联生物受体,从而基于生物分子相互作用的局部表面等离振子共振(LSPR)转导来构建鲁棒的,无标记的生物传感器。更重要的是,GNR上较小的MUDA层减少了靶标与等离子体纳米结构界面的结合距离,从而显着提高了LSPR测定的灵敏度和特异性。与使用常规电聚合物吸附进行修饰相比,MUDA涂层金纳米传感器具有高选择性,对心肌肌钙蛋白I检测的检测限低五倍。

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