密度泛函理论
接受者
带隙
含时密度泛函理论
材料科学
激发态
吸收(声学)
轨道能级差
激发
光电子学
化学物理
化学
计算化学
分子
原子物理学
有机化学
凝聚态物理
物理
复合材料
量子力学
作者
Danmei Zhu,Xinwen Gai,Yi Zou,Ying Jin,Jingang Wang
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2025-07-25
卷期号:30 (15): 3127-3127
被引量:1
标识
DOI:10.3390/molecules30153127
摘要
In this study, three alternating donor-acceptor (D-A) type [12]cycloparaphenylene ([12]CPP) derivatives ([12]CPP 1a, 2a, and 3a) were designed through precise molecular engineering, and their multidimensional photophysical responses and chiroptical properties were systematically investigated. The effects of the alternating D-A architecture on electronic structure, excited-state dynamics, and optical behavior were elucidated through density functional theory (DFT) and time-dependent DFT (TD-DFT) calculations. The results show that the alternating D-A design significantly reduced the HOMO-LUMO energy gap (e.g., 3.11 eV for [12]CPP 2a), enhanced charge transfer characteristics, and induced pronounced red-shifted absorption. The introduction of an imide-based acceptor ([12]CPP 2a) further strengthened the electron push-pull interaction, exhibiting superior performance in two-photon absorption, while the symmetrically multifunctionalized structure ([12]CPP 3a) predominantly exhibited localized excitation with the highest absorption intensity but lacked charge transfer features. Chiral analysis reveals that the alternating D-A architecture modulated the distribution of chiral signals, with [12]CPP 1a displaying a strong Cotton effect in the low-wavelength region. These findings not only provide a theoretical basis for the molecular design of functionalized CPP derivatives, but also lay a solid theoretical foundation for expanding their application potential in optoelectronic devices and chiral functional materials.
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