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Dual-Signal Electrochemical Enantiospecific Recognition System via Competitive Supramolecular Host-Guest Interactions: The Case of Phenylalanine

机译:通过竞争性超分子宿主 - 访客相互作用的双信号电化学识别系统:苯丙氨酸的情况

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摘要

For developing highly selective and sensitive electrochemical sensors for chiral recognition, taking advantage of the synthetical properties of beta-cyclodextrin (beta-CD, strong host-guest recognition) and carbon nanotubes wrapped with reduced graphene oxide (CNTs@rGO, excellent electrochemical property and large surface area), as well as the differences in binding affinity between beta-CD and guest molecules, a dual signal electrochemical sensing strategy was proposed herein for the first time in chiral recognition based on the competitive host-guest interaction between probe and chiral isomers with beta-CD/CNTs@rGO. As a model system, rhodamine B (RhB) and phenylalanine enantiomers (D- and L-Phe) were introduced as probe and target enantiomers, respectively. Due to the host-guest interactions, RhB can enter into the beta-CD cavity, showing remarkable oxidation peak current of RhB. In the presence of L-Phe, competitive interaction with the beta-CD cavity occurs and RhB are replaced by L-Phe owing to the stronger binding affinity between L-Phe and beta-CD, which results in the peak current of RhB decreasing and the peak current of L-Phe appears, and interestingly, the changes of both signals linearly correlate with the concentration of L-Phe. As for D-Phe, it cannot replace RhB owing to the weaker binding affinity between D-Phe and beta-CD. Based on this, a dual-signal electrochemical sensor was developed successfully for recognizing Phe. This dual-signal sensing strategy can provide highly selective and sensitive recognition compared to single-signal sensor and has important potential applications in chiral recognition.
机译:用于开发高精度和敏感的电化学传感器进行手性识别,利用β-环糊精(β-CD,强宿主 - 访客识别)和碳纳米烯氧化物包裹的综合性能(CNTs @ Rgo,优异的电化学性能和大表面积),以及β-CD和客体分子之间的结合亲和力的差异,在本文基于探针和手性异构体之间的竞争宿主 - 访客互动的手性识别中第一次提出了双信号电化学传感策略用beta-cd / cnts @ rgo。作为模型系统,将罗丹明B(RHB)和苯丙氨酸对映异构体(D-和L-PHE)分别作为探针和靶向映体引入。由于寄主访客相互作用,RHB可以进入β-CD腔中,显示出rHB的显着氧化峰值电流。在L-PHE存在下,发生与β-CD腔的竞争相互作用,并且由于L-PHE和β-CD之间的结合亲和力而被L-PHE替换,这导致RHB降低的峰值电流和L-PHE的峰值电流出现,有趣的是,两种信号的变化与L-PHE的浓度线性相关。至于D-PHE,由于D-PHE和β-CD之间的结合亲和力较弱,它不能取代rhb。基于此,成功开发了双信号电化学传感器以识别PHE。与单信号传感器相比,该双信号检测策略可以提供高度选择性和敏感的识别,并在手性识别中具有重要的潜在应用。

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  • 来源
    《Analytical chemistry》 |2019年第4期|共8页
  • 作者单位

    Jiangsu Univ Sch Environm &

    Safety Engn Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Environm &

    Safety Engn Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Environm &

    Safety Engn Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Environm &

    Safety Engn Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Environm &

    Safety Engn Zhenjiang 212013 Jiangsu Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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