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December 2, 2025Chemistry - A European Journal2 citations

Helicene‐Based Chiral Macrocycles and Molecular Cages: Synthetic Strategies, Chiroptical Modulation, and Emerging Applications

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ZQZewei QiPJPeipei JiaWDWei‐Tao Dou

Key Points

  • Enhanced circularly polarized luminescence observed in helicene-based architectures, driving interest in new applications.
  • Key challenges include fluorescence quenching in metallacages and limited structural diversity; solutions are proposed.
  • Observational analysis highlights the potential of helicenes in forming advanced chiral functional materials and cages.
  • New strategies could pave the way for diverse applications of helicene-derived supramolecular architectures.

Abstract

ABSTRACT Macrocycles and molecular cages possess enzyme‐like cavities whose size, shape, and functionality can be precisely engineered. Helicenes, characterized by rigid π‐conjugated backbones and inherent helical chirality, serve as exceptional scaffolds for constructing highly distorted chiral macrocycles and cages. These supramolecular architectures demonstrate enhanced circularly polarized luminescence (CPL), enantioselective recognition, and efficient guest adsorption. This minireview provides a comprehensive overview of recent advances in helicene‐based coordination and covalent strategies, highlighting synthetic methodologies, chiroptical modulation, and emerging applications. Key challenges—including fluorescence quenching in metallacages, synthetic complexity, and limited structural diversity—are critically discussed. We also highlight potential opportunities involving high‐emission linkages, dynamic covalent strategies, and stimuli‐responsive designs. Collectively, these insights establish a framework for the rational design of helicene‐derived macrocycles and three‐dimensional cages, paving the way toward the development of advanced chiral functional materials.

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Cite This Study

Qi et al. (2025) studied this question.

synapsesocial.com/papers/692e3d846c9b3ab28c18759chttps://doi.org/10.1002/chem.202502509
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