4.6 Article

Mechano-responsive D-A luminogen based on bisarylic methanone derivative with brightly tricolored mechanochromic luminescence

Journal

JOURNAL OF LUMINESCENCE
Volume 247, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jlumin.2022.118802

Keywords

Bisarylic methanone derivative; Intramolecular charge transfer; Mechanochromic luminescence; Phenothiazine; Dibenzofuran

Categories

Funding

  1. National Natural Science Foundation of China (NNSFC) [21662028]
  2. Project of Qinghai Science & Technology Department [2020-ZJ-923]

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A new luminogen with intramolecular charge transfer and mechanofluorochromic properties was designed and synthesized. This molecule showed changes in brightness and color under external mechanical stimulation, and increased luminescence efficiency in the solid state.
A new luminogen PTZ-BZ-DBF bearing an electron donor phenothiazine unit and an electron acceptor carbonyl group is designed and synthesized. This molecule adopts highly twisted molecular conformation and exhibits intramolecular charge transfer (ICT), effective solid-state luminescence, and high contrast mechanofluorochromic (MFC) properties. The as-prepared powders show bright yellow-green fluorescence. Under conditions of external mechanical stimulation, the color changes to bright orange-red, and a red shift of 87 nm is observed in the emission spectral profile. Meanwhile, the solid-state luminescence efficiency increases from 20.5% to 28.5%. It is different from general MFC materials, when fumed using DCM vapor or annealed at 150 degrees C, the fluorescence peaks blue shift to approximately 560 nm, and the yellowish-emitting Y-powders are obtained. The ground solids and Y-powders can be converted to the as-prepared solid powders following the process of solvent recrystallization. Thus, tricolor switching is realized. The results obtained using the PXRD and DSC techniques indicate that the MFC phenomenon can be attributed to the process of crystalline-to-amorphous transition. The red shift of the PL spectra is attributed to the planar intramolecular charge transfer (PICT) process induced by conformational planarization in response to external forces.

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