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Two-electron transfer stabilized by excited-state aromatization

机译:激发态芳构化稳定了两电子转移

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摘要

The scientific significance of excited-state aromaticity concerns with the elucidation of processes and properties in the excited states. Here, we focus on >TMTQ, an oligomer composed of a central 1,6-methano[10]annulene and 5-dicyanomethyl-thiophene peripheries (acceptor-donor-acceptor system), and investigate a two-electron transfer process dominantly stabilized by an aromatization in the low-energy lying excited state. Our spectroscopic measurements quantitatively observe the shift of two π-electrons between donor and acceptors. It is revealed that this two-electron transfer process accompanies the excited-state aromatization, producing a Baird aromatic 8π core annulene in >TMTQ. Biradical character on each terminal dicyanomethylene group of >TMTQ allows a pseudo triplet-like configuration on the 8π core annulene with multiexcitonic nature, which stabilizes the energetically unfavorable two-charge separated state by the formation of Baird aromatic core annulene. This finding provides a comprehensive understanding of the role of excited-state aromaticity and insight to designing functional photoactive materials.
机译:激发态芳香性的科学意义与阐明激发态的过程和性质有关。在这里,我们重点研究> TMTQ ,它是由一个中心的1,6-甲基[10]环戊烯和5-二氰基甲基噻吩外围(受体-供体-受体系统)组成的低聚物,并研究了两个在低能横卧激发态下,通过芳构化作用,电子传递过程主要稳定下来。我们的光谱测量定量地观察了供体和受体之间两个π电子的移动。结果表明,这种两电子转移过程伴随着激发态的芳构化,在> TMTQ 中产生了Baird芳族8π核环戊烯。在> TMTQ 的每个末端二氰基亚甲基上的双自由基特征使8π核环上具有多激发性,形成伪三重态,从而通过形成贝尔德芳族核环而稳定了在能量上不利的二电荷分离状态。该发现提供了对激发态芳族作用的全面理解,以及对设计功能性光敏材料的见识。

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