4.7 Article

An elastic organic single crystal with bending and high pressure-induced fluorochromism properties

期刊

DYES AND PIGMENTS
卷 205, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.dyepig.2022.110572

关键词

Elastic crystal; Multi-faceted bending; Bending-induced fluorochromism; Hydrostatic pressure; ?-PL measurement

资金

  1. Shanxi Province Science Foundation for Youths [20210302124468]
  2. National Natural Science Foundation of China [21805175]
  3. Shanxi Normal University Quality Curriculum [2019YZKC-13]

向作者/读者索取更多资源

In this study, a mechanically tunable flexible fluorochromic elastic organic single crystal was prepared, showing reversible color changes under bending and high pressure. The fluorescence emission wavelengths of different crystal surfaces also exhibited distinct responses to bending. Theoretical calculations further explained the reversible changes in fluorescence emission and the important role of intermolecular interactions in the bending-induced fluorochromism. This work provides new insights into the preparation of multi-faceted bending fluorochromism flexible crystals.
The mechanically tunable flexible fluorochromic elastic organic single crystals are extremely rare. Fortunately, we prepared a needle-like elastic crystal (TPABA) with bending and high pressure-induced fluorochromism properties. With the reversible change of hydrostatic pressure, the crystal fluorescence underwent reversible red -shift and blue-shift (wavelength change greater than 100 nm). Interestingly, upon bending, the inner and outer arcs on the (002) and (200) surfaces of the crystal exhibited distinct fluorochromic effects by spatially resolved mu-PL measurements. Upon bending, the fluorescence emission of the inner and outer arcs on the (002) face of the crystal was red-shifted and blue-shifted by 26 nm and 4 nm, respectively. Different from (002) face, the inner arc and outer arc of the crystal (200) plane were only blue-shifted and red-shifted by 2 nm and 3 nm, respectively. Theoretical calculations indicated that, on the one hand, with the reversible bending of the crystal, the inter-molecular interaction force distance in the crystal would change reversibly, and the corresponding inner and outer arc fluorescence emission wavelengths of the crystal plane would reversibly change. On the other hand, the number of 7C-7C interactions on each face of the crystal had an important effect on the bending-induced fluo-rochromism of the crystal. This paper provided new idea for the preparation of the multi-faceted bending flu-orochromism flexible crystals.

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