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The influence of molecular conformation on the photophysics of organic room temperature phosphorescent luminophores

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The influence of molecular conformation on the photophysics of organic room temperature phosphorescent luminophores. / Huang, Rongjuan; Ward, Jonathan S.; Kukhta, Nadzeya A. et al.
In: Journal of Materials Chemistry C, Vol. 6, No. 34, 14.09.2018, p. 9238-9247.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Huang, R, Ward, JS, Kukhta, NA, Avó, J, Gibson, J, Penfold, T, Lima, JC, Batsanov, AS, Berberan-Santos, MN, Bryce, MR & Dias, FB 2018, 'The influence of molecular conformation on the photophysics of organic room temperature phosphorescent luminophores', Journal of Materials Chemistry C, vol. 6, no. 34, pp. 9238-9247. https://doi.org/10.1039/c8tc02987c

APA

Huang, R., Ward, J. S., Kukhta, N. A., Avó, J., Gibson, J., Penfold, T., Lima, J. C., Batsanov, A. S., Berberan-Santos, M. N., Bryce, M. R., & Dias, F. B. (2018). The influence of molecular conformation on the photophysics of organic room temperature phosphorescent luminophores. Journal of Materials Chemistry C, 6(34), 9238-9247. https://doi.org/10.1039/c8tc02987c

Vancouver

Huang R, Ward JS, Kukhta NA, Avó J, Gibson J, Penfold T et al. The influence of molecular conformation on the photophysics of organic room temperature phosphorescent luminophores. Journal of Materials Chemistry C. 2018 Sept 14;6(34):9238-9247. Epub 2018 Aug 17. doi: 10.1039/c8tc02987c

Author

Huang, Rongjuan ; Ward, Jonathan S. ; Kukhta, Nadzeya A. et al. / The influence of molecular conformation on the photophysics of organic room temperature phosphorescent luminophores. In: Journal of Materials Chemistry C. 2018 ; Vol. 6, No. 34. pp. 9238-9247.

Bibtex

@article{e00aa0c1c1124c88a80029df6c01b3c1,
title = "The influence of molecular conformation on the photophysics of organic room temperature phosphorescent luminophores",
abstract = "A series of novel donor–acceptor–donor (D–A–D) compounds featuring dibenzothiophene (DBT) and phenothiazine (PTZ) units are presented. A different degree of steric hindrance between the donor and acceptor fragments is achieved by the systematic changes of donor substituents (methyl, iso-propyl, tert-butyl groups). This leads to the tuning of photophysical properties by conformational control. The unsubstituted DPTZ–DBT molecule exists in both equatorial and axial forms in the ground state, due to the ability of PTZ to form H-extra and H-intra folded conformers that allow formation of parallel quasi-axial (ax) and perpendicular quasi-equatorial (eq) conformers, respectively. However, the equatorial conformer prevails in the excited state. This leads to strong room temperature phosphorescence (RTP) in the green region with high phosphorescence quantum yield (60 ± 8%). Under the influence of bulky substituents, the alkyl-DPTZ–DBT derivatives change molecular conformation, preventing formation of the excited charge transfer state. Hence, blue, but much weaker, phosphorescence is observed. The less bulky methyl substituent on the donor results in dual RTP (blue and green), apparently violating Kasha's rule imposed by the modulation of the barriers between excited states. The experimental results are supported by DFT calculations in the ground and excited state. Control of conformation with substituents is an effective strategy for tuning the excited state properties of D–A–D molecules for RTP emission.",
author = "Rongjuan Huang and Ward, {Jonathan S.} and Kukhta, {Nadzeya A.} and Jo{\~a}o Av{\'o} and Jamie Gibson and Thomas Penfold and Lima, {Jo{\~a}o C.} and Batsanov, {Andrei S.} and Berberan-Santos, {M{\'a}rio N.} and Bryce, {Martin R.} and Dias, {Fernando B.}",
year = "2018",
month = sep,
day = "14",
doi = "10.1039/c8tc02987c",
language = "English",
volume = "6",
pages = "9238--9247",
journal = "Journal of Materials Chemistry C",
issn = "2050-7526",
publisher = "Royal Society of Chemistry",
number = "34",

}

RIS

TY - JOUR

T1 - The influence of molecular conformation on the photophysics of organic room temperature phosphorescent luminophores

AU - Huang, Rongjuan

AU - Ward, Jonathan S.

AU - Kukhta, Nadzeya A.

AU - Avó, João

AU - Gibson, Jamie

AU - Penfold, Thomas

AU - Lima, João C.

AU - Batsanov, Andrei S.

AU - Berberan-Santos, Mário N.

AU - Bryce, Martin R.

AU - Dias, Fernando B.

PY - 2018/9/14

Y1 - 2018/9/14

N2 - A series of novel donor–acceptor–donor (D–A–D) compounds featuring dibenzothiophene (DBT) and phenothiazine (PTZ) units are presented. A different degree of steric hindrance between the donor and acceptor fragments is achieved by the systematic changes of donor substituents (methyl, iso-propyl, tert-butyl groups). This leads to the tuning of photophysical properties by conformational control. The unsubstituted DPTZ–DBT molecule exists in both equatorial and axial forms in the ground state, due to the ability of PTZ to form H-extra and H-intra folded conformers that allow formation of parallel quasi-axial (ax) and perpendicular quasi-equatorial (eq) conformers, respectively. However, the equatorial conformer prevails in the excited state. This leads to strong room temperature phosphorescence (RTP) in the green region with high phosphorescence quantum yield (60 ± 8%). Under the influence of bulky substituents, the alkyl-DPTZ–DBT derivatives change molecular conformation, preventing formation of the excited charge transfer state. Hence, blue, but much weaker, phosphorescence is observed. The less bulky methyl substituent on the donor results in dual RTP (blue and green), apparently violating Kasha's rule imposed by the modulation of the barriers between excited states. The experimental results are supported by DFT calculations in the ground and excited state. Control of conformation with substituents is an effective strategy for tuning the excited state properties of D–A–D molecules for RTP emission.

AB - A series of novel donor–acceptor–donor (D–A–D) compounds featuring dibenzothiophene (DBT) and phenothiazine (PTZ) units are presented. A different degree of steric hindrance between the donor and acceptor fragments is achieved by the systematic changes of donor substituents (methyl, iso-propyl, tert-butyl groups). This leads to the tuning of photophysical properties by conformational control. The unsubstituted DPTZ–DBT molecule exists in both equatorial and axial forms in the ground state, due to the ability of PTZ to form H-extra and H-intra folded conformers that allow formation of parallel quasi-axial (ax) and perpendicular quasi-equatorial (eq) conformers, respectively. However, the equatorial conformer prevails in the excited state. This leads to strong room temperature phosphorescence (RTP) in the green region with high phosphorescence quantum yield (60 ± 8%). Under the influence of bulky substituents, the alkyl-DPTZ–DBT derivatives change molecular conformation, preventing formation of the excited charge transfer state. Hence, blue, but much weaker, phosphorescence is observed. The less bulky methyl substituent on the donor results in dual RTP (blue and green), apparently violating Kasha's rule imposed by the modulation of the barriers between excited states. The experimental results are supported by DFT calculations in the ground and excited state. Control of conformation with substituents is an effective strategy for tuning the excited state properties of D–A–D molecules for RTP emission.

U2 - 10.1039/c8tc02987c

DO - 10.1039/c8tc02987c

M3 - Journal article

VL - 6

SP - 9238

EP - 9247

JO - Journal of Materials Chemistry C

JF - Journal of Materials Chemistry C

SN - 2050-7526

IS - 34

ER -