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February 13, 2026Journal of the American Chemical Society3 citations

Self-Assembled Chiral Nanochannel Arrays with Amplified Signal for Self-Powered Enantiomer Discrimination

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HYHua YangYHYichen HouCLC. P. Li

Key Points

  • The aim is to develop an efficient technique for real-time recognition of chiral molecules using self-assembled nanochannels.
  • Utilized high-density chiral nanochannels for chiral molecule recognition.
  • Applied electrochemical methods for sensitivity and real-time analysis.
  • Created ordered helical porphyrin arrays from porphyrin-cored star homopolymers.
  • Integrated a self-powered nanosensor for enhanced functionality.
  • Achieved chiral-selective recognition capabilities through nanochannel design.
  • Demonstrated dual functionality: osmotic energy conversion and chiral molecule recognition.
  • Established a sustainable platform for convenient chiral recognition.

Abstract

Molecular chirality is significantly important for drug synthesis, material design, and other life activities. Thus, developing an efficient, convenient, and rapid technique for chiral recognition is of great industrial and physiological significance. Here, we demonstrate an electrochemical method for the sensitive real-time recognition of chiral molecules by using high-density chiral nanochannels. The chiral porphyrins direct the self-assembly of porphyrin-cored star homopolymers (p-HP) into ordered helical porphyrin arrays, providing chiral-selective nanochannels with enantioselective recognition capabilities. This well-defined assembly enables dual functionality of osmotic energy conversion and chiral molecule recognition, which is combined with a self-powered nanosensor for chiral molecule recognition. This work bridges the gap between molecular chirality and macroscopic membrane engineering, offering a sustainable platform for convenient chiral molecule recognition.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/698ebf3485a1ff6a930165a5https://doi.org/10.1021/jacs.5c18501
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