材料科学
各向异性
热致变色
延伸率
液晶
化学物理
热膨胀
衍射
联轴节(管道)
扭转
光学
工作(物理)
光电子学
结构着色
热的
变形(气象学)
智能材料
纳米尺度
透射率
带隙
微观尺度
Crystal(编程语言)
复合材料
凝聚态物理
结构变化
光开关
原子单位
光力学
纳米技术
宏观尺度
分子动力学
对称(几何)
作者
Jinbo Ouyang,Chunyan Zhang,Xuesong Yang,Feiqiang He,Limin Zhou,Li Xu,Zhijian Zheng,Yin Li,Hongyu Zhang
出处
期刊:Small
[Wiley]
日期:2026-08-21
卷期号:: e75390-e75390
摘要
Thermoresponsive crystals linking molecular motion to macroscopic functions pose challenges in smart material integration. This work reports a new thermoresponsive organic crystal, 4-((4-(dimethylamino)phenyl)diazenyl)benzonitrile (Y28) exhibiting reversible thermally induced macroscopic expansion coupled with a sharp thermochromic switch. Through variable-temperature single-crystal X-ray diffraction, spectroscopy, and response behavior analysis, it was found that the crystal underwent continuous elongation upon heating and that a color change from red to orange occurred at a specific temperature, which process is fully reversible. Structural analysis indicates that the slight, reversible adjustment of the twist angle and interlayer spacing is manifested optically as a decrease in the band gap and a color change from red to orange with increasing temperature. At 420 K, the symmetry center disappears, and the entire heating-cooling cycle shows an order-disorder phase transition. By combining variable-temperature single-crystal diffraction data with macroscopic in situ deformation measurements, a complete process from the atomic to the macroscopic scale is constructed. This qualitatively and quantitatively elucidates the physical nature of the anisotropic thermal expansion of the Y28 crystal, along with its excellent cyclic stability. Its multifunctional coupling response mechanism provides new ideas for designing next-generation smart drive and optical sensing materials.
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