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March 3, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Temperature-, Concentration-, and Solvent-Dependent M / P Helicity Switching of Double-Helical Monometallofoldamers with Inversion of Circularly Polarized Luminescence

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KMKotaro MatsumuraDTDaiki TauchiMHMasashi Hasegawa

Key Points

  • CPL inversion switching occurs in response to temperature and concentration changes, demonstrating the system's adaptability.
  • The double-helical structure of [(R)-Ag-(1c)2]-[PF6] showed positive CPL in CH2Cl2 and negative CPL in toluene with specific measures of fluorescence.
  • Analysis of fluorescent double-helical monometallofoldamers used chiral side chains for precise helicity control during solvent interactions.
  • This study highlights the complexity of double-helical materials, calling for future investigation into their potential applications in optical devices.

Abstract

Fluorescent double-helical monometallofoldamers Ag-(1)2-PF6 were constructed by the mononuclear complexation of two bipyridine strands 1 featuring two L-shaped dibenzopyrrolo-1,2-a-1,8-naphthyridine units at both ends with a Ag-(I) cation. These monometallofoldamers exhibited double-helical/open conformational switching. (R)-Ag-(1c)2-PF6 with chiral side chains induced a single-handed helix sense and enabled precise control of M/P helicity switching in response to a solvent. This complex also exhibited strong fluorescence and circularly polarized luminescence (CPL) inversion switching upon M/P helicity inversion. For instance, (R)-Ag-(1c)2-PF6 exhibited positive CPL in CH2Cl2 (φF = 0.69, g lum = 1.9 × 10-3) and negative CPL in toluene (φF = 0.79, g lum = -2.0 × 10-3). This double helix also aggregated in polar solvents, which led to CPL inversion switching induced by temperature- and concentration-dependent aggregation.

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Cite This Study

Matsumura et al. (2026) studied this question.

synapsesocial.com/papers/69a75e88c6e9836116a293behttps://doi.org/10.1021/jacsau.5c01659
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