4.6 Review

Molecular doped organic semiconductor crystals for optoelectronic device applications

Journal

JOURNAL OF MATERIALS CHEMISTRY C
Volume 8, Issue 43, Pages 14996-15008

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0tc02746d

Keywords

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Funding

  1. Ministry of Science and Technology of China [2018YFA0703200, 2017YFA0204503, 2016YFB0401100]
  2. National Natural Science Foundation of China [91833306, 61890943, 51725304, 51733004, 21875259]
  3. Youth Innovation Promotion Association of the Chinese Academy of Sciences
  4. National Program for Support of Top-Notch Young Professionals
  5. Beijing National Laboratory for Molecular Sciences [BNLMS-CXXM-202012]
  6. CAS President's International Fellowship Initiative (PIFI)
  7. ARC Centre of Excellence in Exciton Science [CE170100026]

Ask authors/readers for more resources

For semiconductors, doping is an efficient approach to tune their energy bandgaps, charge transport, and optical properties which could enable the improvement of the corresponding performances and open up the possibility of multifunction integration. Recently, significant advances have been achieved in molecular doped organic semiconductors, especially doped organic semiconductor single crystals (OSSCs) which have features of well-defined packing structures, long-range molecular orders, and low-density defects for fundamental studies and improved properties. In this review, we will give a summary of the exciting progress of molecular doped OSSCs from the aspects of selection criteria of molecular dopants, general growth methods, and resulting optoelectronic properties as well as their applications in optoelectronic devices. Finally, a brief conclusion is given with challenges and perspectives of molecular doped OSSCs and their related promising research directions in this field.

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