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非辐射激发态衰减通过石墨烯纳米结构中的锥形交叉

Nonradiative Excited-State Decay via Conical Intersection in Graphene Nanostructures.

机构信息

Department of Physics, City University of Hong Kong, Hong Kong SAR, China.

School of Materials Science and Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan, China.

出版信息

Chemphyschem. 2019 Nov 5;20(21):2754-2758. doi: 10.1002/cphc.201900532. Epub 2019 Sep 23.

Abstract

Chemical groups are known to tune the luminescent efficiencies of graphene-related nanomaterials, but some species, including the epoxide group (-COC-), are suspected to act as emission-quenching sites. Herein, by performing nonadiabatic excited-state dynamics simulations, we reveal a fast (within 300 fs) nonradiative excited-state decay of a graphene epoxide nanostructure from the lowest excited singlet (S ) state to the ground (S ) state via a conical intersection (CI), at which the energy difference between the S and S states is approximately zero. This CI is induced after breaking one C-O bond at the -COC- moiety during excited-state structural relaxation. This study ascertains the role of epoxide groups in inducing the nonradiative recombination of the excited electron-hole, providing important insights into the CI-promoted nonradiative de-excitations and the luminescence tuning of relevant materials. In addition, it shows the feasibility of utilizing nonadiabatic excited-state dynamics simulations to investigate the photophysical processes of the excited states of graphene nanomaterials.

摘要

化学基团被认为可以调节与石墨烯相关的纳米材料的发光效率,但有些物质,如环氧化物基团(-COC-),被怀疑是发光猝灭的部位。在此,通过进行非绝热激发态动力学模拟,我们揭示了石墨烯环氧化物纳米结构从最低激发单线态(S )态到基态(S )态的快速(300fs 内)非辐射激发态衰减,通过一个锥形交叉(CI),其中 S 和 S 态之间的能量差约为零。在激发态结构弛豫过程中,-COC-部分的一个 C-O 键断裂后,会产生这种 CI。这项研究确定了环氧化物基团在诱导激子电子空穴的非辐射复合中的作用,为相关材料的 CI 促进非辐射去激发和发光调谐提供了重要的见解。此外,它还表明了利用非绝热激发态动力学模拟来研究石墨烯纳米材料激发态的光物理过程的可行性。

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