Electrochemical Enantiomer Recognition Based on sp3-to-sp2 Converted Regenerative Graphene/Diamond Electrode

Author:

Gao Jingyao,Zhang Haoyang,Ye Chen,Yuan Qilong,Chee Kuan,Su Weitao,Yu Aimin,Yu Jinhong,Lin Cheng-TeORCID,Dai Dan,Fu Li

Abstract

It is of great significance to distinguish enantiomers due to their different, even completely opposite biological, physiological and pharmacological activities compared to those with different stereochemistry. A sp3-to-sp2 converted highly stable and regenerative graphene/diamond electrode (G/D) was proposed as an enantiomer recognition platform after a simple β-cyclodextrin (β-CD) drop casting process. The proposed enantiomer recognition sensor has been successfully used for d and l-phenylalanine recognition. In addition, the G/D electrode can be simply regenerated by half-minute sonication due to the strong interfacial bonding between graphene and diamond. Therefore, the proposed G/D electrode showed significant potential as a reusable sensing platform for enantiomer recognition.

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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