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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Development of highly reproducible nanogap SERS substrates: Comparative performance analysis and its application for glucose sensing
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Development of highly reproducible nanogap SERS substrates: Comparative performance analysis and its application for glucose sensing

机译:高度可再现的纳米间隙SERS底物的开发:比较性能分析及其在葡萄糖传感中的应用

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摘要

We report a new class of a SERS substrate with ordered nanostructures fabricated on silicon wafer using a deep UV (DUV) lithography technique followed by surface coating of silver and/or gold film. These substrates possess sharp edged nanogaps, which are responsible for the SERS enhancement. SERS performance of these substrates was analyzed by studying its reproducibility, repeatability and signal enhancement measured from 2-naphthalene thiol (NT) molecule covalently anchored on to the substrate. SERS performance of this substrate was also compared with a commercial substrate and metal film over nanosphere (MFON) substrate, which is one of the most promising reported substrates. It was found that MFON substrate showed a slightly higher SERS intensity among all three chosen substrates, but the relative standard deviation (RSD) of the intensity for the two prominent peaks of NT was about 7-14% while for our nanogap DUV substrate the RSD was less than 3% with comparable SERS signal intensities to MFON. For the commercial substrate, the relative standard deviation was about 7-9% but with a much lower SERS signal intensity. To our knowledge, this observed reproducibility along with good SERS enhancement with nanogap substrate is the best among the reported SERS substrates. These observed results with the nanogap substrate show great potential for the development of a sensitive SERS biosensing platform. Efficacy of the nanogap DUV substrate for biosensing was demonstrated for in vitro glucose sensing under physiologically relevant conditions.
机译:我们报道了一类新型的SERS基底,其具有使用深紫外(DUV)光刻技术在硅片上制造的有序纳米结构,然后对银和/或金膜进行表面涂覆。这些底物具有锋利的边缘纳米间隙,这有助于增强SERS。这些底物的SERS性能通过研究其共价锚定在底物上的2-萘硫醇(NT)分子的可重复性,可重复性和信号增强来分析。还将该基材的SERS性能与商用基材和纳米球上的金属膜(MFON)基材进行了比较,MFON基材是最有希望报道的基材之一。结果发现,MFON底物在所有三种选择的底物中均显示出稍高的SERS强度,但NT的两个突出峰的强度的相对标准偏差(RSD)约为7-14%,而我们的纳米级DUV底物的RSD SERS信号强度可与MFON相比,小于3%。对于商业底物,相对标准偏差约为7-9%,但具有较低的SERS信号强度。据我们所知,在报道的SERS底物中,观察到的可重复性以及纳米间隙底物对SERS的良好增强是最好的。纳米间隙基质的这些观察结果显示出开发灵敏的SERS生物传感平台的巨大潜力。纳米间隙DUV底物对生物传感的功效已在生理相关条件下用于体外葡萄糖传感。

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