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April 18, 2026Precision Chemistry0 citationsOpen Access

Unraveling the Substituent-Controlled Fluorescence Modulation in One-Dimensional Cd-Based Coordination Polymers: A Structure–Property Relationship Study

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SWShuyu Wang樊樊倩红LWLei Wang

Key Points

  • This research aims to explore how substituent modifications can influence fluorescence properties in Cd-based coordination polymers.
  • Synthesize three isostructural Cd-based coordination polymers through hydrothermal methods.
  • Modify substituents systematically to observe their effects on fluorescence behavior.
  • Investigate thermoresponsive and mechanoresponsive properties of the polymers.
  • Fluorescence in the coordination polymers is regulated by both electronic and steric effects of substituents.
  • The polymers exhibit dual-channel emission, combining ligand-centered and excimer-derived fluorescence.
  • Distinct responses to temperature and mechanical stimuli correlate with structural changes due to substituents.

Abstract

The substituent engineering strategy has emerged as a powerful tool for precise modulation of the structure–property relationships in coordination polymers (CPs), yet the rational design of isostructural CPs with tunable dual-channel fluorescence and integrated stimulus-responsive behaviors remains a compelling challenge. Herein, three isostructural, one-dimensional Cd-based CPs (1–3) were rationally designed and hydrothermally synthesized via systematic substituent modification. Notably, the solid-state fluorescence of 1–3 is precisely regulated by the electronic and steric effects of substituents, enabling dual-channel emission encompassing ligand-centered monomer fluorescence and excimer-derived fluorescence. Furthermore, systematic investigations reveal that these CPs exhibit distinct thermoresponsive and mechanoresponsive fluorescence behaviors, which are closely correlated with substituent-induced structural subtlety. This work not only demonstrates the efficacy of substituent engineering in tailoring dual-channel fluorescence within isostructural CPs but also provides insights into the design of multifunctional, stimulus-responsive fluorescent materials for potential applications in sensors and optoelectronics.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69e31ec840886becb653e7dbhttps://doi.org/10.1021/prechem.5c00453
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