2015
DOI: 10.1039/c5ra09161f
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Structure–property relationship of isomeric diphenylethenyl-disubstituted dimethoxycarbazoles

Abstract: ARTICLE This journal isIsomeric 3,6-dimethoxy-and 2,7-dimethoxycarbazoles containing diphenylethenyl moieties were synthesized by condensation of the appropriate dimethoxycarbazoles with diphenylacetaldehyde. The solid-state structures and the molecular order of the compounds were proven by X-ray crystallography. Both compounds were found to be capable of glass formation with the comparable glass transition temperatures (70-71 o C). They exhibited high thermal stabilities, with the 5 % weight loss temperatures… Show more

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Cited by 17 publications
(10 citation statements)
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“…The linkage through the 3,6-positions of the carbazole unit forms a linear conjugation between the nitrogen atoms, which facilitates the electron removal from the conjugated main chain. In contrast, the nitrogen atoms through the 2,7-linked carbazoles are classified as a formal cross-conjugated structure [38]. …”
Section: Resultsmentioning
confidence: 99%
“…The linkage through the 3,6-positions of the carbazole unit forms a linear conjugation between the nitrogen atoms, which facilitates the electron removal from the conjugated main chain. In contrast, the nitrogen atoms through the 2,7-linked carbazoles are classified as a formal cross-conjugated structure [38]. …”
Section: Resultsmentioning
confidence: 99%
“…The attenuation in Φ F could be a result of the known carbonyl-induced fluorescence quenching 10 or the ability of the near-planar lactone systems efficiently pi-stacking, resulting in aggregation induced quenching. 22 …”
Section: Resultsmentioning
confidence: 99%
“…300 nm has the n / p* and p / p* symmetry forbidden characters on the phenothazine and carbazole moieties, respectively, since the orbitals on the carbazole moiety are oriented along the symmetry axis. 16 The highest oscillator strength (i.e. ca.…”
Section: Photophysical Properties and Dft Calculationsmentioning
confidence: 99%
“…A good correlation between the theoretical and experimental charge mobilities was observed using this approximation in our previous work. 16 The reorganization energy may be dened as the relaxation energy of a molecule from the geometry of neutral state to the charged (anion and cation) state and from the charged to the neutral state. The reorganization energy (l) values were calculated by the adiabatic potential energy surface method.…”
Section: Charge-transporting Propertiesmentioning
confidence: 99%