发光
研磨
化学
各向异性
静水压力
各向同性
荧光团
准分子
氢键
压缩(物理)
衍射
化学物理
荧光
光学
分子物理学
流体静力平衡
复合材料
光电子学
分子
材料科学
热力学
有机化学
量子力学
物理
作者
Kazuhiko Nagura,Shohei Saito,Hitoshi Yusa,Hiroshi Yamawaki,Hiroshi Fujihisa,Hiroyasu Sato,Yuichi Shimoikeda,Shigehiro Yamaguchi
摘要
Luminescent mechanochromism has been intensively studied in the past few years. However, the difference in the anisotropic grinding and the isotropic compression is not clearly distinguished in many cases, in spite of the importance of this discrimination for the application of such mechanochromic materials. We now report the distinct luminescent responses of a new organic fluorophore, tetrathiazolylthiophene, to these stresses. The multichromism is achieved over the entire visible region using the single fluorophore. The different mechanisms of a blue shift by grinding crystals and of a red shift under hydrostatic pressure are fully investigated, which includes a high-pressure single-crystal X-ray diffraction analysis. The anisotropic and isotropic modes of mechanical loading suppress and enhance the excimer formation, respectively, in the 3D hydrogen-bond network.
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