基于超疏水SERS阵列的高通量HPLC-SERS能够从单个洗脱液液滴产生光谱。

IF 1.8 4区 化学 Q3 CHEMISTRY, ANALYTICAL
Umi Yamaguchi, Hiroaki Honda, Shusuke Kumagai, Hiroyuki Takei
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引用次数: 0

摘要

我们开发了一种高通量高效液相色谱-表面增强拉曼光谱(HPLC-SERS)方案,该方案每秒捕获15 μL的淋洗液液滴,并获得一系列SERS光谱,以显示淋洗液内化学成分的时间过程。为了实现这一目标,我们在纳米球(MFON)上制备了基于金属膜的SERS点阵列。50个直径为3毫米的斑点以5 × 10的阵列形式形成在由疏水涂层覆盖的特殊玻璃载玻片上。在第二个版本中,SERS斑点尺寸减小到1mm,周围有一个接触角大于120度的超疏水区域。在每个斑点上滴入2 μL洗脱液。加热阵列衬底使液滴在3分钟内完全蒸发,没有不利的咖啡环效应。我们通过将1 mM腺嘌呤注射到便携式高效液相色谱仪中并捕获SERS光谱的时间过程来证明这种设置的实用性。我们根据其对浓度和孵育时间的依赖以及显示信号强度均匀性的二维SERS成像来表征我们的MFON SERS斑点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-throughput HPLC-SERS capable of generating a spectrum from individual eluent droplets based on a superhydrophobic SERS array.

We have developed a protocol for a high-throughput high-performance liquid chromatography-surface enhanced Raman spectroscopy (HPLC-SERS), whereby a 15 μL eluent droplet was captured every second and a series of SERS spectra was obtained to show a time course in the chemical composition within the eluent. To accomplish this, we prepared arrays of SERS spots based on metal film on nanosphere (MFON). Fifty of these spots 3 mm in diameter were formed in a 5 by 10 array format on a special glass slide covered by a hydrophobic coating. In a second version, the SERS spot size was reduced to 1 mm, surrounded by a superhydrophobic area with a contact angle greater than 120 degrees. Here, 2 μL of the eluent droplet was placed on each spot. Heating of the array substrate allowed complete evaporation of the droplet under 3 min, without the adverse coffee ring effect. We demonstrated the utility of such a setup by injecting 1 mM adenine into a portable HPLC instrument and capturing the time course of SERS spectra. We characterize our MFON SERS spots in terms of its dependence on the concentration and incubation time as well as a two-dimensional SERS imaging showing the uniformity in the signal intensity.

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来源期刊
Analytical Sciences
Analytical Sciences 化学-分析化学
CiteScore
2.90
自引率
18.80%
发文量
232
审稿时长
1 months
期刊介绍: Analytical Sciences is an international journal published monthly by The Japan Society for Analytical Chemistry. The journal publishes papers on all aspects of the theory and practice of analytical sciences, including fundamental and applied, inorganic and organic, wet chemical and instrumental methods. This publication is supported in part by the Grant-in-Aid for Publication of Scientific Research Result of the Japanese Ministry of Education, Culture, Sports, Science and Technology.
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