Li Can, Zhou Wei, Liu Zhaoxin, Gao Rong, Mi Qixi, Ning Zhijun, Ren Yi
School of Physical Science and Technology, ShanghaiTech University Shanghai 201210 China
Shanghai Clinical Research and Trial Center Shanghai 201210 People's Republic of China.
Chem Sci. 2024 Oct 22;15(44):18608-16. doi: 10.1039/d4sc05857g.
Implanting heteroatoms into polycyclic aromatic molecules (PAMs) offers a great opportunity to fine-tune their optoelectronic properties. Herein, we report a new type of nonbenzenoid PAM in which the sp C atoms are replaced by S and P in the azulene moiety. The synthesis harnessed modular P-chemistry and cyclization chemistry, which afforded the first example of P-azulene-based PAMs with isomeric PN- and PC-type structures. Photophysical and theoretical studies revealed that the P-environments have strong impacts on the structures and properties of the P-PAMs. Different from the electronic structure of azulene with strong π conjugation, the PC derivatives maintained effective σ*-π* hyperconjugation in the frontier molecular orbitals the P-centers. In particular, the PC derivative with a P(iii)-center showed unexpected room-temperature phosphorescence in solution, which was attributed to the excited-state aromaticity induced structure change at the P-center. Decoration with various aryl groups further modified the photophysical and redox properties in another dimension. Furthermore, bis(triarylamine)-functionalized P-PAMs formed stable radical cations in which the P-environments strongly influenced the mixed-valence state and open-shell characters. As a proof of concept, bis(triarylamine)-functionalized P-PAMs were explored as the hole-transporting layers in perovskite solar cells, and a power conversion efficiency of 14% was achieved. As a new example of nonbenzenoid PAMs with intriguing optoelectronic properties, our P-PAMs are promising building blocks for diverse optoelectronic applications in the future.
将杂原子引入多环芳烃分子(PAMs)为精细调节其光电性质提供了绝佳机会。在此,我们报道了一种新型的非苯型PAM,其中在薁部分sp C原子被S和P取代。该合成利用了模块化P化学和环化化学,得到了具有异构PN型和PC型结构的基于P - 薁的PAMs的首个实例。光物理和理论研究表明,P环境对P - PAMs的结构和性质有强烈影响。与具有强π共轭的薁的电子结构不同,PC衍生物在前沿分子轨道中的P中心保持有效的σ* - π*超共轭。特别地,具有P(iii)中心的PC衍生物在溶液中表现出意想不到的室温磷光,这归因于P中心激发态芳香性诱导的结构变化。用各种芳基进行修饰在另一个维度上进一步改变了光物理和氧化还原性质。此外,双(三芳基胺)功能化的P - PAMs形成了稳定的自由基阳离子,其中P环境强烈影响混合价态和开壳特征。作为概念验证,双(三芳基胺)功能化的P - PAMs被探索用作钙钛矿太阳能电池中的空穴传输层,并实现了14%的功率转换效率。作为具有有趣光电性质的非苯型PAMs的新实例,我们的P - PAMs有望成为未来各种光电应用的有前途的构建块。