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Sensitive SERS-pH sensing in biological media using metal carbonyl functionalized planar substrates

机译:使用羰基金属官能化的平面底物在生物介质中进行灵敏的SERS-pH传感

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摘要

Conventional nanoparticle based Surface enhanced Raman scattering (SERS) technique for pH sensing often fails due to the aggregation of particles when detecting in acidic medium or biosamples having high ionic strength. Here, We develop SERS based pH sensing using a novel Raman reporter, arene chromium tricarbonyl linked aminothiophenol (Cr(CO)_3-ATP), functionalized onto a nano-roughened planar substrates coated with gold. Unlike the SERS spectrum of the ATP molecule that dominates in the 400-1700 cm~(-1) region, which is highly interfered by bio-molecules signals, metal carbonyl-ATP (Cr(CO)_3)-ATP) offers the advantage of monitoring the pH dependent strong CO stretching vibrations in the mid-IR (1800-2200 cm~(-1)) range. Raman signal of the CO stretching vibrations at ~1820 cm~(-1) has strong dependency on the pH value of the environment, where its peak undergo noticeable shift as the pH of the medium is varied from 3.0 to 9.0. The sensor showed better sensitivity in the acidic range of the pH. We also demonstrate the pH sensing in a urine sample, which has high ionic strength and our data closely correlate to the value obtained from conventional sensor. In future, this study may lead to a sensitive chip based pH sensing platform in bio-fluids for the early diagnosis of diseases.
机译:当在酸性介质或具有高离子强度的生物样品中进行检测时,基于pH值的基于纳米粒子的传统表面增强拉曼散射(SERS)技术通常会由于粒子的聚集而失败。在这里,我们开发了使用新型拉曼报告仪的基于SERS的pH传感,芳烃铬三羰基连接的氨基硫酚(Cr(CO)_3-ATP),功能化到涂有金的纳米粗糙平面基板上。与在400-1700 cm〜(-1)区占主导地位的ATP分子的SERS光谱受到生物分子信号的强烈干扰不同,金属羰基-ATP(Cr(CO)_3)-ATP)具有优势在中红外(1800-2200 cm〜(-1))范围内监测pH依赖的强烈CO拉伸振动的过程。 CO拉伸振动在〜1820 cm〜(-1)处的拉曼信号强烈依赖于环境的pH值,当介质的pH从3.0变为9.0时,其峰值会发生明显的偏移。该传感器在pH的酸性范围内显示出更好的灵敏度。我们还证明了尿液样品中的pH感测具有很高的离子强度,我们的数据与从常规传感器获得的值密切相关。将来,这项研究可能会导致在生物流体中建立基于敏感芯片的pH传感平台,以用于疾病的早期诊断。

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