volume 115 issue 50 pages 14519-14525

Hole Transport in Triphenylamine Based OLED Devices: From Theoretical Modeling to Properties Prediction

Publication typeJournal Article
Publication date2011-11-22
scimago Q2
wos Q2
SJR0.634
CiteScore4.8
Impact factor2.8
ISSN10895639, 15205215
PubMed ID:  22060634
Physical and Theoretical Chemistry
Abstract
For the series of para-substituted triphenylamines, optimized geometries, HOMO and LUMO energy levels, ionization potentials Ip, reorganization energies for hole transport λ+, and frontier orbital contours have been calculated by means of ab initio computations. Relationships between them and the Hammett parameter are presented. According to calculations, electron releasing substituents increase the HOMO and LUMO energies of TPA, while electron withdrawing ones decrease it. This behavior is reflected in subsequent decreasing and increasing of ionization potentials of substituted TPAs. Calculations show that there exists also a strong substituent effect on the reorganization energy λ+, which is a dominating factor of hole mobility. It is concluded that proper tuning of the HOMO and LUMO levels (and, as a result, ionization potential, Ip) and reorganization energy λ+ (consequently, hole mobility) of the triphenylamine can be done by alteration of the TPA electronic structure by an appropriate substitution. It is demonstrated that the proper adjustment of the HOMO levels of HTM facilitates the reduction of an energy barrier at the interface of ITO/HTL and HTL/EL and ensure the high hole injection and hole transport rate. On the other hand, appropriate adjustment of the LUMO level prevents an electron leak from the EL into the HTM layer. Results of these calculations can be useful in the process of designing new HTM materials of desired properties (high efficiency, stability, and durability).
Found 
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Cias P., Slugovc C., Gescheidt G. Hole Transport in Triphenylamine Based OLED Devices: From Theoretical Modeling to Properties Prediction // Journal of Physical Chemistry A. 2011. Vol. 115. No. 50. pp. 14519-14525.
GOST all authors (up to 50) Copy
Cias P., Slugovc C., Gescheidt G. Hole Transport in Triphenylamine Based OLED Devices: From Theoretical Modeling to Properties Prediction // Journal of Physical Chemistry A. 2011. Vol. 115. No. 50. pp. 14519-14525.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1021/jp207585j
UR - https://doi.org/10.1021/jp207585j
TI - Hole Transport in Triphenylamine Based OLED Devices: From Theoretical Modeling to Properties Prediction
T2 - Journal of Physical Chemistry A
AU - Cias, Pawel
AU - Slugovc, Christian
AU - Gescheidt, Georg
PY - 2011
DA - 2011/11/22
PB - American Chemical Society (ACS)
SP - 14519-14525
IS - 50
VL - 115
PMID - 22060634
SN - 1089-5639
SN - 1520-5215
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2011_Cias,
author = {Pawel Cias and Christian Slugovc and Georg Gescheidt},
title = {Hole Transport in Triphenylamine Based OLED Devices: From Theoretical Modeling to Properties Prediction},
journal = {Journal of Physical Chemistry A},
year = {2011},
volume = {115},
publisher = {American Chemical Society (ACS)},
month = {nov},
url = {https://doi.org/10.1021/jp207585j},
number = {50},
pages = {14519--14525},
doi = {10.1021/jp207585j}
}
MLA
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MLA Copy
Cias, Pawel, et al. “Hole Transport in Triphenylamine Based OLED Devices: From Theoretical Modeling to Properties Prediction.” Journal of Physical Chemistry A, vol. 115, no. 50, Nov. 2011, pp. 14519-14525. https://doi.org/10.1021/jp207585j.