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首页> 外文期刊>Journal of solid state electrochemistry >An electrochemical chiral sensor based on electrochemically modified electrode for the enantioselective discrimination of D-/L-tryptophan
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An electrochemical chiral sensor based on electrochemically modified electrode for the enantioselective discrimination of D-/L-tryptophan

机译:基于电化学改性电极的电化学手性传感器,用于D- / L-色氨酸的映选择性辨别

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摘要

Chirality is a universal characteristic of natural systems and discrimination of enantiomers of a chiral molecule plays a major role particularly in chemical biology and in pharmacology. In this study, a novel electrochemical chiral sensor was developed for direct discrimination of D- and L-tryptophan (Trp) in an aqueous medium. The chiral sensor was produced by hierarchical modification of reduced graphene oxide, gold nanoparticles, poly-L-cysteine, and poly-L-phenylalanine methyl ester on the glassy carbon electrode. Each of the layers was produced by electrochemical techniques, such as electrochemical reduction and polymerization. After structural and morphological characterizations, the electrochemical behaviors of the enantiomeric pairs of Trp at the modified electrode were investigated by cyclic voltammetry and square wave voltammetry. A distinctive separation between the oxidation peak potentials of D- and L-Trp was observed at 0.73 and 0.83 V, respectively. In order to investigate the amperometric response towards D- and L-Trp, chronoamperometry technique was also used in the concentration range of 0.1-0.8 mM. Furthermore, the electrochemical performance of the modified electrodes was investigated in a mixed solution of D- and L-Trp. The results showed that the prepared electrode could be used as an electrochemical chiral sensor for Trp enantiomers.
机译:手性是一种普遍的自然系统特征,并且手性分子对映的鉴别鉴定特别是在化学生物学和药理学中的主要作用。在该研究中,开发了一种新型电化学手性传感器,用于直接区分水性介质中的D-和L-色氨酸(TRP)。通过在玻璃状碳电极上的还原氧化物,金纳米粒子,聚-1-半胱氨酸和聚-1-苯丙氨酸甲酯的等级改性生产手性传感器。通过电化学技术,例如电化学还原和聚合来生产每种层。通过循环伏安法和方波伏安来研究在结构和形态学特征中,研究修饰电极处的TRP的映体对的电化学行为。在0.73和0.83V下观察到D-和L-TRP的氧化峰电位之间的独特分离。为了研究对D-和L-TRP的功率响应,计时法也用于0.1-0.8mm的浓度范围。此外,在D-和L-TRP的混合溶液中研究了改性电极的电化学性能。结果表明,制备的电极可用作TRP对映体的电化学手性传感器。

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