Liu Xing Wang, Zhao Weijun, Wu Yue, Meng Zhengong, He Zikai, Qi Xin, Ren Yiran, Yu Zhen-Qiang, Tang Ben Zhong
College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518071, China.
Feringa Nobel Prize Scientist Joint Research Center, School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Nat Commun. 2022 Jul 6;13(1):3887. doi: 10.1038/s41467-022-31481-3.
The development of smart-responsive materials, in particular those with non-invasive, rapid responsive phosphorescence, is highly desirable but has rarely been described. Herein, we designed and prepared a series of molecular rotors containing a triazine core and three bromobiphenyl units: o-Br-TRZ, m-Br-TRZ, and p-Br-TRZ. The bromine and triazine moieties serve as room temperature phosphorescence-active units, and the bromobiphenyl units serve as rotors to drive intramolecular rotation. When irradiated with strong ultraviolet photoirradiation, intramolecular rotations of o-Br-TRZ, m-Br-TRZ, and p-Br-TRZ increase, successively resulting in a photothermal effect via molecular motions. Impressively, the photothermal temperature attained by p-Br-TRZ is as high as 102 °C, and synchronously triggers its phosphorescence due to the ordered molecular arrangement after molecular motion. The thermal effect is expected to be important for triggering efficient phosphorescence, and the photon input for providing a precise and non-invasive stimulus. Such sequential photo-thermo-phosphorescence conversion is anticipated to unlock a new stimulus-responsive phosphorescence material without chemicals invasion.
智能响应材料的开发,尤其是那些具有非侵入性、快速响应磷光的材料,是非常令人期待的,但很少有相关描述。在此,我们设计并制备了一系列含有三嗪核心和三个溴联苯单元的分子转子:邻溴 - 三嗪(o - Br - TRZ)、间溴 - 三嗪(m - Br - TRZ)和对溴 - 三嗪(p - Br - TRZ)。溴和三嗪部分作为室温磷光活性单元,而溴联苯单元作为转子来驱动分子内旋转。当用强紫外光照射时,o - Br - TRZ、m - Br - TRZ和p - Br - TRZ的分子内旋转依次增加,通过分子运动相继产生光热效应。令人印象深刻的是,p - Br - TRZ达到的光热温度高达102°C,并由于分子运动后有序的分子排列而同步触发其磷光。这种热效应有望对触发高效磷光很重要,而光子输入用于提供精确且非侵入性的刺激。这种顺序的光 - 热 - 磷光转换有望开启一种无需化学物质侵入的新型刺激响应磷光材料。