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The entangled triplet pair state in acene and heteroacene materials

  • Chaw Keong Yong
  • , Andrew J. Musser
  • , Sam L. Bayliss
  • , Steven Lukman
  • , Hiroyuki Tamura
  • , Olga Bubnova
  • , Rawad K. Hallani
  • , Aurelie Meneau
  • , Roland Resel
  • , Munetaka Maruyama
  • , Shu Hotta
  • , Laura M. Herz
  • , David Beljonne
  • , John E. Anthony
  • , Jenny Clark
  • , Henning Sirringhaus

Producción científica: Articlerevisión exhaustiva

212 Citas (Scopus)

Resumen

Entanglement of states is one of the most surprising and counter-intuitive consequences of quantum mechanics, with potent applications in cryptography and computing. In organic materials, one particularly significant manifestation is the spin-entangled triplet-pair state, which mediates the spin-conserving fission of one spin-0 singlet exciton into two spin-1 triplet excitons. Despite long theoretical and experimental exploration, the nature of the triplet-pair state and inter-triplet interactions have proved elusive. Here we use a range of organic semiconductors that undergo singlet exciton fission to reveal the photophysical properties of entangled triplet-pair states. We find that the triplet pair is bound with respect to free triplets with an energy that is largely material independent (∼30 meV). During its lifetime, the component triplets behave cooperatively as a singlet and emit light through a Herzberg-Teller-type mechanism, resulting in vibronically structured photoluminescence. In photovoltaic blends, charge transfer can occur from the bound triplet pairs with >100% photon-to-charge conversion efficiency.

Idioma originalEnglish
Número de artículo15953
PublicaciónNature Communications
Volumen8
DOI
EstadoPublished - jul 12 2017

Nota bibliográfica

Publisher Copyright:
© The Author(s) 2017.

Financiación

We thank the G8 Research Councils Initiative on Multilateral Research Funding (EPSRC EP/K025651; US National Science Foundation CMM1-1255494; Japanese Society for the Promotion of Science). J.C. thanks the University of Sheffield for a VC fellowship. A.J.M., J.C. and S.L.B. thank EPSRC (EP/M025330, EP/M01083X and EP/M025330).

FinanciadoresNúmero del financiador
U.S. Department of Energy Chinese Academy of Sciences Guangzhou Municipal Science and Technology Project Oak Ridge National Laboratory Extreme Science and Engineering Discovery Environment National Science Foundation National Energy Research Scientific Computing Center National Natural Science Foundation of China1255494
U.S. Department of Energy Chinese Academy of Sciences Guangzhou Municipal Science and Technology Project Oak Ridge National Laboratory Extreme Science and Engineering Discovery Environment National Science Foundation National Energy Research Scientific Computing Center National Natural Science Foundation of China
Sheffield Hallam UniversityEP/M01083X, EP/M025330
Sheffield Hallam University
Japan Society for the Promotion of Science Fund for the Promotion of Joint International Research15K05374
Japan Society for the Promotion of Science Fund for the Promotion of Joint International Research
Engineering and Physical Sciences Research CouncilCMM1-1255494, EP/K025651/1, EP/K025651
Engineering and Physical Sciences Research Council

    ODS de las Naciones Unidas

    Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

    1. Affordable and clean energy
      Affordable and clean energy

    ASJC Scopus subject areas

    • General Chemistry
    • General Biochemistry, Genetics and Molecular Biology
    • General Physics and Astronomy

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