Institute of Environmental Science, Department of Chemistry, Shanxi University, Taiyuan, 030006, China.
Key Laboratory of Green Chemistry & Technology of Ministry of Education, College of Architecture and Environment, Sichuan University, Chengdu, 610064, China.
Analyst. 2022 Feb 28;147(5):880-888. doi: 10.1039/d1an02262h.
Palladium@gold nanoparticle modified three-dimensional-reduced graphene oxide (3D-rGO/Pd@Au) was coupled with carboxymethyl-β-cyclodextrin to form a novel nanocomposite (3D-rGO/Pd@Au/CM-β-CD). The 3D-rGO/Pd@Au/CM-β-CD served as a chiral sensing interface for the electrochemical enantiorecognition of tyrosine (Tyr) a differential pulse voltammetry (DPV) approach. The 3D-rGO/Pd@Au demonstrates good electrical conductivity and efficient catalytic activity as an electrochemical indicator. Simultaneously, the CM-β-CD displays a supramolecular chiral selectivity to reveal a higher binding affinity to the target L-tyrosine (L-Tyr) than to D-tyrosine (D-Tyr). Under the optimized determining conditions, the oxidation peak current ratio of L-Tyr to D-Tyr (/) was 2.12, meanwhile, the peak currents of the two isomers were linearly proportional to the concentration over the range of 0.8-130 μM with LODs of 52 nM and 96 nM for L- and D-Tyr (S/N = 3), respectively. This approach exhibits distinguished sensitivity, excellent selectivity and good reproducibility, as well as great stability, which can accurately determine the relative content of L- or D-Tyr enantiomers in a racemic solution.
钯纳米粒子修饰的三维还原氧化石墨烯(3D-rGO/Pd@Au)与羧甲基-β-环糊精偶联,形成了一种新型的纳米复合材料(3D-rGO/Pd@Au/CM-β-CD)。3D-rGO/Pd@Au/CM-β-CD 作为手性传感界面,用于酪氨酸(Tyr)的电化学对映体识别,采用差分脉冲伏安法(DPV)方法。3D-rGO/Pd@Au 具有良好的导电性和高效的催化活性,可用作电化学指示剂。同时,CM-β-CD 显示出超分子手性选择性,对目标 L-酪氨酸(L-Tyr)表现出比 D-酪氨酸(D-Tyr)更高的结合亲和力。在优化的测定条件下,L-Tyr 与 D-Tyr 的氧化峰电流比(/)为 2.12,同时,两种异构体的峰电流在 0.8-130 μM 范围内呈线性关系,L-Tyr 和 D-Tyr 的检出限分别为 52 nM 和 96 nM(S/N = 3)。该方法具有较高的灵敏度、优异的选择性和良好的重现性,以及较好的稳定性,可准确测定外消旋溶液中 L-或 D-Tyr 对映体的相对含量。