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March 21, 2026Crystals1 citationsOpen Access

Preparation of Polymerizable Mechanochromic Gelator

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MKMizuho KondoTITsuyoshi IidaSISho Iida

Key Points

  • The aim is to synthesize polymerizable mechanochromic gelators with improved mechanical and thermal properties.
  • Synthesis of polymerizable units for tougher gels.
  • Creation of triblock polymers incorporating mechanoresponsive dyes.
  • Preparation of xerogel films from synthesized monomers and polymers.
  • Evaluation of optical properties and mechanical responsiveness under mechanical and thermal stimuli.
  • Xerogel films displayed an irreversible blue shift in photoluminescent color upon mechanical grinding.
  • Triblock copolymer films showed a blue shift that can partially revert with thermal annealing.
  • Uniaxial grinding of monomer-based xerogels resulted in linearly polarized photoluminescence.

Abstract

Mechanochromism is a phenomenon in which mechanical stimuli change the optical properties of a material, such as its color and emission properties. Various materials exhibiting this behavior have been intensively studied. Mechanochromic materials that exploit liquid crystals have been previously reported. Using liquid crystals, properties different from those of conventional materials, such as anisotropic response and multicolored luminescence due to intermediate aggregation phase stabilization, can be expected. Recently, we reported the preparation and evaluation of the optical properties of liquid-crystalline mechanochromic dyes with cholesterol terminals. The dyes formed gels in some solvents, changed their emission color, and exhibited a friable response without reaching a crystalline state. In addition, film-forming properties, processability, and responsiveness were improved in thin films mixed with polymers. However, the mechanical and thermal stabilities of the gels were low. In this study, a compound similar to the polymerizable unit was synthesized to produce tougher gels. In addition, triblock polymers with a mechanoresponsive dye in the hard segment were synthesized. The xerogel film prepared from the monomer showed an irreversible blue shift in photoluminescent color by mechanical grinding and also exhibited linearly polarized photoluminescence by uniaxial grinding due to force-induced alignment. On the other hand, the xerogel film prepared from the triblock copolymer showed a blue shift in photoluminescent color that can approximately revert to the initial state by thermal annealing, though it showed no anisotropy by uniaxial grinding, indicating that polymerization partially preserves mechanical responsiveness.

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Cite This Study

Kondo et al. (2026) studied this question.

synapsesocial.com/papers/69be37dd6e48c4981c677c8fhttps://doi.org/10.3390/cryst16030212
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