Research Center of Gansu Military and Civilian Integration Advanced Structural Materials, Key Laboratory of Eco-Environment-Related Polymer Materials, Ministry of Education of China, Key Laboratory of Polymer Materials of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou, 730070, People's Republic of China.
Mikrochim Acta. 2021 Apr 11;188(5):163. doi: 10.1007/s00604-021-04818-w.
A facile chiral composite (3D-NGMWCNT@(S,S)-CIL) was prepared by integrating three-dimensional N-doped graphene oxide multi-walled carbon nanotubes (3D-NGMWCNT) and chiral ionic liquid ((S,S)-CIL) via electrodeposition. SEM, XRD, XPS, and electrochemical methods were used to characterize this composite and it revealed that the integrated 3D-NGMWCNT@(S,S)-CIL composite showed excellent electrochemical performance. Therefore, a 3D-NGMWCNT@(S,S)-CIL/GCE electrochemical sensor was constructed for enantioselective recognition of Trp enantiomers. The coefficient (I/I) of the 3D-NGMWCNT@(S,S)-CIL/GCE chiral sensor was 2.26 by differential pulse voltammograms (DPV), revealing that the synthesized 3D-NGMWCNT@(S,S)-CIL had a higher affinity for L-Trp than D-Trp. Moreover, UV-V is spectroscopy and a water contact angle test also proved this result. The 3D-NGMWCNT@(S,S)-CIL/GCE sensor had a detection limit of 0.024 μM and 0.055 μM, and sensitivity of 62.35 μA·mM·cm and 30.40 μA·mM·cm for L-Trp and D-Trp, respectively, with a linear response range of 0.01 to 5 mM. In addition, the 3D-NGMWCNT@(S,S)-CIL/GCE chiral sensor showed excellent stability, and good reproducibility and was applied to detect L-Trp or D-Trp in real samples. The novel 3D-NGMWCNT@(S,S)-CIL/GCE chiral sensor provides an efficient and convenient strategy for chiral enantioselective recognition. Schematic construction of the 3D-NGMWCNT@(S,S)-CIL/GCE chiral electrochemical sensors.
一种简便的手性复合材料(3D-NGMWCNT@(S,S)-CIL)通过电沉积将三维氮掺杂氧化石墨烯多壁碳纳米管(3D-NGMWCNT)和手性离子液体((S,S)-CIL)集成在一起制备。使用 SEM、XRD、XPS 和电化学方法对这种复合材料进行了表征,结果表明集成的 3D-NGMWCNT@(S,S)-CIL 复合材料表现出优异的电化学性能。因此,构建了 3D-NGMWCNT@(S,S)-CIL/GCE 电化学传感器用于对 Trp 对映异构体进行对映选择性识别。差分脉冲伏安法(DPV)的 I/I 系数为 2.26,表明合成的 3D-NGMWCNT@(S,S)-CIL 对 L-Trp 的亲和力高于 D-Trp。此外,紫外可见光谱和水接触角测试也证明了这一结果。3D-NGMWCNT@(S,S)-CIL/GCE 传感器对 L-Trp 和 D-Trp 的检测限分别为 0.024 μM 和 0.055 μM,灵敏度分别为 62.35 μA·mM·cm 和 30.40 μA·mM·cm,线性响应范围为 0.01 至 5 mM。此外,3D-NGMWCNT@(S,S)-CIL/GCE 手性传感器表现出优异的稳定性、良好的重现性,并应用于实际样品中 L-Trp 或 D-Trp 的检测。新型 3D-NGMWCNT@(S,S)-CIL/GCE 手性传感器为手性对映选择性识别提供了一种高效便捷的策略。3D-NGMWCNT@(S,S)-CIL/GCE 手性电化学传感器的示意构建。