Sun Xinyu, Li Hui, Mokarizadeh Abdol Hadi, Xu Xiaohan, Liu Tong, Luo Jiancheng, Yang Yuqing, Zhang Shuailin, Liu Fangbei, Tsige Mesfin, Cheng Stephen Z D, Liu Tianbo
School of Polymer Science and Polymer Engineering, The University of Akron, Akron, OH, 44325, USA.
Small. 2025 Jan;21(1):e2406511. doi: 10.1002/smll.202406511. Epub 2024 Oct 24.
The distinct molecular states - single molecule, assembly, and aggregate - of two ionic macromolecules, TPPE-APOSS and TPE-APOSS, are easily distinguishable through their tunable fluorescence emission wavelengths, which reflect variations in intermolecular distances. Both ionic macromolecules contain aggregation-induced emission (AIE) active moieties whose emission wavelengths are directly correlated to their mutual distances in solution: far away from each other as individual molecules, maintaining a tunable and relatively long distance in electrostatic interactions-controlled blackberry-type assemblies (microphase separation), or approaching van der Waals close distance in aggregates (macrophase separation). Furthermore, within the blackberry assemblies, the emission wavelength decreases monotonically with increasing assembly size, indicative of shorter intermolecular distances at nanoscale. The emission changes of TPPE-APOSS blackberry assemblies can even be visually distinguishable by eyes when their sizes and intermolecular distances are tuned. Molecular dynamics simulations further revealed that macromolecules are confined in various conformations by controllable intermolecular distances within the blackberry structure, thereby resulting in fluorescence emission with tunable wavelength.
两种离子型大分子TPPE - APOSS和TPE - APOSS的不同分子状态——单分子、组装体和聚集体,可通过其可调谐的荧光发射波长轻松区分,这些波长反映了分子间距离的变化。两种离子型大分子都含有聚集诱导发光(AIE)活性部分,其发射波长与它们在溶液中的相互距离直接相关:作为单个分子时彼此相距很远,在静电相互作用控制的黑莓型组装体(微相分离)中保持可调谐且相对较长的距离,或在聚集体(宏观相分离)中接近范德华近距离。此外,在黑莓组装体内,发射波长随着组装体尺寸的增加而单调降低,这表明在纳米尺度上分子间距离更短。当TPPE - APOSS黑莓组装体的尺寸和分子间距离被调谐时,其发射变化甚至可以用肉眼直观区分。分子动力学模拟进一步表明,大分子在黑莓结构内通过可控的分子间距离被限制在各种构象中,从而产生具有可调谐波长的荧光发射。