Zhang Shi, Liu Yuan, Dong Jiahao, Li Jiguang, Lei Da, Dou Xincun
Xinjiang Key Laboratory of Trace Chemical Substances Sensing, Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Urumqi 830011, China.
Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China.
Anal Chem. 2024 Jun 4;96(22):9026-9033. doi: 10.1021/acs.analchem.4c00426. Epub 2024 May 21.
Precise detection of a trace substance that intrinsically possesses weak chemical activity and less-distinctive spatial structure is of great significance, but full of challenges, as it could not be effectively recognized via either an active covalent reaction process or multiple noncovalent interactions toward its simple structure. Here, the electronic-effect-driven recognition strategy was proposed to visually sense an illicit drug, γ-hydroxybutyric acid (GHB), which was treated as an analyte model due to its inherent simple structure. In particular, a sensing system composed of two probes substituted by the nitro (-NO) and the hydrogen (-H), was constructed with the characteristic yellow coloring and blue fluorescence, as well as high sensitivity (0.586 ng/mL), fast response (0.2 s), and specific recognition, even in the presence of 22 interferents. In addition, a portable eyeshadow box-like sensing chip was fabricated and proven to be reliable and feasible in sensing GHB disguised in liquors for self-protection in a covert manner. Hence, this work developed an electronic-effect-driven modulation strategy of the recognition interaction between the probe and the analyte and, thus, would open up a new thought for detecting the analyte with weak activity and a simple structure, as well as propel the relevant application in real scenarios.
精确检测一种本质上具有弱化学活性和不太明显空间结构的痕量物质具有重要意义,但充满挑战,因为无论是通过活性共价反应过程还是对其简单结构的多种非共价相互作用,都无法有效地识别它。在此,提出了电子效应驱动的识别策略,以可视化方式检测非法药物γ-羟基丁酸(GHB),由于其固有的简单结构,将其作为分析物模型。特别是,构建了一种由硝基(-NO)和氢(-H)取代的两种探针组成的传感系统,该系统具有特征性的黄色着色和蓝色荧光,以及高灵敏度(0.586 ng/mL)、快速响应(0.2 s)和特异性识别能力,即使在存在22种干扰物的情况下也是如此。此外,还制作了一个便携式眼影盒状传感芯片,经证明在以隐蔽方式检测伪装在酒类中的GHB以进行自我保护方面是可靠且可行的。因此,这项工作开发了一种电子效应驱动的探针与分析物之间识别相互作用的调制策略,从而为检测具有弱活性和简单结构的分析物开辟了新思路,并推动其在实际场景中的相关应用。