化学
对映体
整改
光电流
手性(物理)
纳米技术
离子液体
组合化学
离子键合
对映选择合成
光电子学
催化作用
有机化学
材料科学
手征对称破缺
物理
离子
量子力学
Nambu–Jona Lasinio模型
功率(物理)
夸克
作者
Jiayi Liu,Baihe Fu,Zhonghai Zhang
标识
DOI:10.1021/acs.analchem.0c02341
摘要
Chirality is an intrinsic and essential property of nature, and the enantiomeric discrimination of chiral molecules can provide important information leading to a better understanding of chiral recognition in biological systems and furthering the development of useful molecular devices in biochemical and pharmaceutical studies. Therefore, the exploration of new detection techniques with high accuracy and reliability for high-throughput enantioselective detection is still highly desirable. Herein, a chiral enantiomers selective recognition platform based on self-standing titanium dioxide nanochannel arrays (TiO2 NCAs) is proposed to implement the ionic current rectification triggered photoelectrochemical (PEC) detection, which provides a novel sensing platform to discriminate chiral amino acid through synchronous output dual response signals of ionic current and photocurrent. The utilization of nanochannel arrays guaranteed the high-throughput detection, and the dual signal model avoided a "false positive" detection. In addition, based on the fabricated detection platform, various chiral substances can be facilely detected through integrating different chiral regulation units, which shed light on the construction of reliable chiral sensors for practical applications in a biological environment.
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