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Exciton Transport in Molecular Semiconductor Crystals for Spin‐Optoelectronics Paradigm

Authors :
Hongbing Fu
Wenping Hu
Shuming Bai
Weigang Zhu
Jie Liu
Yajing Sun
Qiang Shi
Zhicheng Zhang
Source :
Chemistry – A European Journal. 27:222-227
Publication Year :
2020
Publisher :
Wiley, 2020.

Abstract

Organic semiconductors with long-range exciton diffusion length are highly desirable for optoelectronics but currently remain rare. Here, the estimated diffusion length of singlet excitons (LD ) in 2,6-diphenyl anthracene (DPA) crystals grown by solvent evaporation was shown to be up to approximately 124 nm. These crystals showed a previously unseen parallelogram morphology with layer-by-layer edge-on molecular stacking, isotropic optical waveguiding, radiation rate and non-radiation rate constants of 0.15 and 0.26 ns-1 respectively, as well as good field-effect transistor hole mobility and theoretically computed strong electronic couplings as high as 109 meV. Photoresponse experiments revealed that the photoconductivity of DPA crystals is surprisingly not related to the radiative pathway but associated with rapid exciton diffusion to the crystal surface for charge separation and carrier bimolecular recombination. Taken together, DPA was shown to be a promising semiconducting material for a new organic optoelectronics paradigm.

Details

ISSN :
15213765 and 09476539
Volume :
27
Database :
OpenAIRE
Journal :
Chemistry – A European Journal
Accession number :
edsair.doi.dedup.....35c0a243e7737617b9db4dde242d2fdc