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Facile fabrication of distance-tunable Au-nanorod chips for single-nanoparticle plasmonic biosensors

机译:轻松制造用于单纳米粒子等离子体生物传感器的距离可调的Au-nanorod芯片

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摘要

In this work, we present a simple and effective method to fabricate distance-controllable, Au nanorod (AuNR) chips thorough electrostatic assembly. Cetyltrimethylammonium bromide (CTAB)-capped AuNRs were immobilized on a hydroxyl-functionalized glass substrate by immersion of the glass into AuNR-suspension. The electrostatic surfacial assembly of AuNRs offers significant advantages over conventional thiol-induced chemistry, i.e., direct control of self-assembly of AuNRs, easy fabrication in ambient environment and most importantly, broad range of tunable inter-particle distance, ranging from 0.25 to 10μm. The mechanism of time-dependant deposition process of AuNRs was described via competitive bindings of AuNRs and free CTAB molecules in AuNR-suspension. In addition, the electrostatically anchored AuNRs on a glass substrate provide sufficient stability under harsh experimental conditions with flow of basic/acidic solutions and organic solvents with different polarity. The feasibility of the AuNR-chips fabricated by the proposed method for single-nanoparticle plasmonic biosensors was demonstrated by the plasmonic measurement of aptamer-thrombin binding event. The corresponding limit of detection of thrombin molecule was found to be ~278. pM based on the signal to noise ratio of 4.
机译:在这项工作中,我们提出了一种简单有效的方法,通过静电组装来制造距离可控制的Au纳米棒(AuNR)芯片。通过将十六烷基三甲基溴化铵(CTAB)封盖的AuNRs通过将玻璃浸入AuNR悬浮液中而固定在羟基官能化的玻璃基板上。 AuNRs的静电表面组装提供了优于常规硫醇诱导化学的显着优势,即直接控制AuNRs的自组装,在环境中易于制造以及最重要的是,可调的粒子间距离范围广,范围从0.25到10μm 。 AuNRs与游离CTAB分子在AuNR悬浮液中的竞争性结合描述了AuNRs的时间依赖性沉积过程的机制。另外,在苛刻的实验条件下,通过碱性/酸性溶液和极性不同的有机溶剂的流动,静电锚定在玻璃基板上的AuNRs具有足够的稳定性。通过对适体-凝血酶结合事件的等离激元测量证明了所提出的方法制造的用于单纳米粒子等离激元生物传感器的AuNR芯片的可行性。凝血酶分子的检出限为〜278。 pM基于4的信噪比

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