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利用等离子体银纳米立方体作为 SERS 活性基底超灵敏检测阿莫西林。

Ultrasensitive detection of amoxicillin using the plasmonic silver nanocube as SERS active substrate.

机构信息

Eskisehir Osmangazi University, Central Research Laboratory Application and Research Center (ARUM), Eskisehir 26040, Turkey.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2022 Oct 5;278:121308. doi: 10.1016/j.saa.2022.121308. Epub 2022 May 6.

Abstract

Even though amoxicillin is used as an antibacterial drug in some foods such as fish, chick, etc. However, the use of amoxicillin in the food industry is prohibited. Therefore, rapid detection and sensitive detection at ultra-low concentration of amoxicillin is very important for human. Surface enhanced Raman scattering (SERS) is fast and reliable method to determine the molecules at ultra-low concentration. In this study, silver nanocubes were synthesized and used as SERS active substrate. The synthesized Ag NCs exhibit an excellent sensitivity towards the detection of amoxicillin at the lowest concentration of 10 M based on the effect resulting from Ag NCs leading to the high electromagnetic effect and chemical mechanism. The dynamic linear regression between the Raman intensity and amoxicillin concentration over seven orders of magnitude (from 10 to 10 M) was excellent with high reliability (R = 0.99). On the one hand, SERS substrate can be used after storing for 20 days. Because Ag NCs also demonstrated remarkable recyclability, reproducibility, and chemical stability. As a result, Ag NCs can be used as a potential SERS substrate to detect amoxicillin at ultra-low concentration.

摘要

尽管阿莫西林在一些食物中被用作抗菌药物,如鱼、鸡等。然而,食品工业中禁止使用阿莫西林。因此,快速、灵敏地检测超低浓度的阿莫西林对人类非常重要。表面增强拉曼散射(SERS)是一种快速可靠的方法,可以在超低浓度下测定分子。在这项研究中,合成了银纳米立方作为 SERS 活性基底。基于银纳米立方导致的高电磁效应和化学机制,合成的 Ag NCs 对检测最低浓度为 10M 的阿莫西林表现出优异的灵敏度。在七个数量级(从 10 到 10M)范围内,拉曼强度与阿莫西林浓度之间的动态线性回归非常出色,可靠性高(R=0.99)。一方面,SERS 衬底可以在储存 20 天后使用。因为 Ag NCs 还表现出显著的可回收性、重现性和化学稳定性。因此,Ag NCs 可用作潜在的 SERS 衬底,以超低频检测阿莫西林。

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