Balancing Charge Transfer and Frenkel Exciton Coupling Leads to Excimer Formation in Molecular Dimers: Implications for Singlet Fission

  • Bae, Youn Jue
  • Shimizu, Daiki
  • Schultz, Jonathan D.
  • Kang, Gyeongwon
  • Zhou, Jiawang
  • 외 3명
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초록

Photoexcitation of molecular chromophore aggre-gates can form excimer states that play a significant role in photophysical processes such as charge and energy transfer as well as singlet fission. An excimer state is commonly defined as a superposition of Frenkel exciton and charge transfer states. In this work, we investigate the dynamics of excimer formation and decay in pi-stacked 9,10-bis(phenylethynyl)anthracene (BPEA) covalent dimers appended to a xanthene spacer, where the electronic coupling between the two BPEA molecules is adjusted by changing their longitudinal molecular slip distances. Using exciton coupling calculations, we quantify the relative contributions of Frenkel excitons and charge transfer states and find that there is an upper and lower threshold of the charge transfer contribution for efficient excimer formation to occur. Knowing these thresholds can aid the design of molecular aggregates that optimize singlet fission.

키워드

TRANSFER CHARACTERELECTRON-TRANSFERTRANSFER STATESUPEREXCHANGEDERIVATIVESCHEMISTRYYIELD
제목
Balancing Charge Transfer and Frenkel Exciton Coupling Leads to Excimer Formation in Molecular Dimers: Implications for Singlet Fission
저자
Bae, Youn JueShimizu, DaikiSchultz, Jonathan D.Kang, GyeongwonZhou, JiawangSchatz, George C.Osuka, AtsuhiroWasielewski, Michael R.
DOI
10.1021/acs.jpca.0c07646
발행일
2020-10-15
유형
Article
저널명
Journal of Physical Chemistry A
124
41
페이지
8478 ~ 8487