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用于对映选择性识别色氨酸对映体的新型氮掺杂碳点/β-环糊精纳米复合材料

Novel N-Doped Carbon Dots/β-Cyclodextrin Nanocomposites for Enantioselective Recognition of Tryptophan Enantiomers.

作者信息

Xiao Qi, Lu Shuangyan, Huang Chusheng, Su Wei, Huang Shan

机构信息

College of Chemistry and Materials Science, Guangxi Teachers Education University, Nanning 530001, China.

出版信息

Sensors (Basel). 2016 Nov 9;16(11):1874. doi: 10.3390/s16111874.

Abstract

Based on N-doped carbon dots/β-cyclodextrin nanocomposites modified glassy carbon electrodes (N-CDs/β-CD/GCE), an effective electrochemical sensor for enantioselective recognition of tryptophan (Trp) enantiomers was developed by differential pulse voltammograms (DPVs). Fluorescent N-CDs were synthesized through a hydrothermal method and characterized by spectroscopic approaches. The N-CDs/β-CD nanocomposites were efficiently electrodeposited on the surface of GCE through C-N bond formation between N-CDs and electrode. The obtained N-CDs/β-CD/GCE was characterized by multispectroscopic and electrochemical methods. Such N-CDs/β-CD/GCE generated a significantly lower Ip and more negative Ep in the presence of l-Trp in DPVs, which was used for the enantioselective recognition of Trp enantiomers. The N-CDs/β-CD nanocomposites showed different binding constants for tryptophan enantiomers, and they further selectively bonded with l-Trp to form inclusion complexes. This N-CDs/β-CD/GCE combined advantages of N-CDs with strong C-N binding ability and β-CD with specific recognition of Trp enantiomers to fabricate a novel sensing platform for enantioselective recognition of Trp enantiomers. This strategy provided the possibility of using a nanostructured sensor to discriminate the chiral molecules in bio-electroanalytical applications.

摘要

基于氮掺杂碳点/β-环糊精纳米复合材料修饰玻碳电极(N-CDs/β-CD/GCE),通过差分脉冲伏安法(DPV)开发了一种用于对映选择性识别色氨酸(Trp)对映体的有效电化学传感器。通过水热法合成了荧光N-CDs,并采用光谱方法对其进行了表征。通过N-CDs与电极之间形成C-N键,将N-CDs/β-CD纳米复合材料有效地电沉积在GCE表面。采用多种光谱和电化学方法对所得的N-CDs/β-CD/GCE进行了表征。在DPV中,这种N-CDs/β-CD/GCE在存在l-Trp的情况下产生显著更低的峰电流(Ip)和更正的峰电位(Ep),用于对Trp对映体的对映选择性识别。N-CDs/β-CD纳米复合材料对色氨酸对映体表现出不同的结合常数,并且它们进一步选择性地与l-Trp结合形成包合物。这种N-CDs/β-CD/GCE结合了具有强C-N结合能力的N-CDs和对Trp对映体具有特异性识别能力的β-CD的优势,构建了一个用于对映选择性识别Trp对映体的新型传感平台。该策略为在生物电分析应用中使用纳米结构传感器区分手性分子提供了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ae0/5134533/b1f4bec62cff/sensors-16-01874-sch001a.jpg

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