Matches in SemOpenAlex for { <https://semopenalex.org/work/W2800183743> ?p ?o ?g. }
- W2800183743 endingPage "229" @default.
- W2800183743 startingPage "218" @default.
- W2800183743 abstract "Abstract This work describes the synthesis of two sets of photoactive compounds with π-extended conjugation developed from a quinoxaline core condensed from an ortho-diamine and 1,2-diketone and followed by a Sonogashira coupling reaction. The electrochemical, photophysical and thermal properties of these compounds were evaluated. Thermogravimetric analysis (TGA) indicated high thermal stability with decomposition temperatures up to 370 °C for all dyes. The electrochemical behaviour of the alkoxy and tetrazole quinoxaline derivatives showed a reversible wave in the reduction region because of the formation of radical anions and two irreversible oxidation waves at more positive potentials. The alkoxy and tetrazole compounds showed absorption in the blue region (∼460 nm) and in the violet region (∼430 nm), respectively, with molar absorptivity coefficients ascribed to allowed π–π* electronic transitions. The band-gaps of the alkoxy and tetrazole compounds were calculated by onset peaks presenting values of approximately 2.35 eV and 2.55 eV, respectively. A relative broad emission located at approximately 550 nm was observed for the alkoxy derivatives with a positive solvatochromism of ∼20 nm. A less intense solvatochromism was observed for the tetrazole derivatives; however, the maxima were located in the cyan-green to blue regions. The large Stokes' shift for all compounds (∼100 nm) probably indicates a charge transfer mechanism (ICT) in the excited state. The fluorescence lifetimes of both sets of compounds were obtained by time-correlated single photon counting (TCSPC) in different solvents, rendering nearly solvent-independent behaviour to the alkoxy derivatives but a pronounced solvatochromic effect to the tetrazoles, with one of the compounds dimerizing in the excited state. Because of the high electronic density of the molecular cores and good fluorescence quantum yields, a organic light emitting diode (OLED) of great colour purity was fabricated with one of the alkoxy derivatives. The diode was prepared by solution-based protocols offering 103 cd m −2 at 9.8 V with Comission Internationale de l’Eclairage (CIE) coordinates of (0.50, 0.50)." @default.
- W2800183743 created "2018-05-17" @default.
- W2800183743 creator A5009416323 @default.
- W2800183743 creator A5011678771 @default.
- W2800183743 creator A5017263799 @default.
- W2800183743 creator A5025427529 @default.
- W2800183743 creator A5036244057 @default.
- W2800183743 creator A5040965204 @default.
- W2800183743 creator A5041875771 @default.
- W2800183743 creator A5061971991 @default.
- W2800183743 creator A5066795351 @default.
- W2800183743 creator A5069253568 @default.
- W2800183743 creator A5070852717 @default.
- W2800183743 creator A5071032113 @default.
- W2800183743 date "2018-10-01" @default.
- W2800183743 modified "2023-10-03" @default.
- W2800183743 title "Synthesis, electrochemical, thermal and photophysical characterization of quinoxaline-based π-extended electroluminescent heterocycles" @default.
- W2800183743 cites W1934221656 @default.
- W2800183743 cites W1966353489 @default.
- W2800183743 cites W1970646372 @default.
- W2800183743 cites W1975538398 @default.
- W2800183743 cites W1976388396 @default.
- W2800183743 cites W1985055200 @default.
- W2800183743 cites W1986815926 @default.
- W2800183743 cites W1987741147 @default.
- W2800183743 cites W1987833486 @default.
- W2800183743 cites W1988483193 @default.
- W2800183743 cites W1998570149 @default.
- W2800183743 cites W2001979332 @default.
- W2800183743 cites W2002691275 @default.
- W2800183743 cites W2002904553 @default.
- W2800183743 cites W2003272853 @default.
- W2800183743 cites W2006681399 @default.
- W2800183743 cites W2012910452 @default.
- W2800183743 cites W2013830407 @default.
- W2800183743 cites W2015373753 @default.
- W2800183743 cites W2021890161 @default.
- W2800183743 cites W2022495988 @default.
- W2800183743 cites W2034285106 @default.
- W2800183743 cites W2038162979 @default.
- W2800183743 cites W2038746310 @default.
- W2800183743 cites W2049343845 @default.
- W2800183743 cites W2051050535 @default.
- W2800183743 cites W2054403400 @default.
- W2800183743 cites W2055692442 @default.
- W2800183743 cites W2061494210 @default.
- W2800183743 cites W2064866349 @default.
- W2800183743 cites W2065172954 @default.
- W2800183743 cites W2071062862 @default.
- W2800183743 cites W2074041959 @default.
- W2800183743 cites W2079488111 @default.
- W2800183743 cites W2090907982 @default.
- W2800183743 cites W2091592091 @default.
- W2800183743 cites W2091882051 @default.
- W2800183743 cites W2101495800 @default.
- W2800183743 cites W2102181432 @default.
- W2800183743 cites W2118585442 @default.
- W2800183743 cites W2125602310 @default.
- W2800183743 cites W2137733516 @default.
- W2800183743 cites W2154147469 @default.
- W2800183743 cites W2158328380 @default.
- W2800183743 cites W2159499025 @default.
- W2800183743 cites W2168869531 @default.
- W2800183743 cites W2170549702 @default.
- W2800183743 cites W2171559455 @default.
- W2800183743 cites W2213713309 @default.
- W2800183743 cites W2331628805 @default.
- W2800183743 cites W2466495066 @default.
- W2800183743 cites W2611134065 @default.
- W2800183743 doi "https://doi.org/10.1016/j.dyepig.2018.04.059" @default.
- W2800183743 hasPublicationYear "2018" @default.
- W2800183743 type Work @default.
- W2800183743 sameAs 2800183743 @default.
- W2800183743 citedByCount "18" @default.
- W2800183743 countsByYear W28001837432019 @default.
- W2800183743 countsByYear W28001837432020 @default.
- W2800183743 countsByYear W28001837432021 @default.
- W2800183743 countsByYear W28001837432022 @default.
- W2800183743 countsByYear W28001837432023 @default.
- W2800183743 crossrefType "journal-article" @default.
- W2800183743 hasAuthorship W2800183743A5009416323 @default.
- W2800183743 hasAuthorship W2800183743A5011678771 @default.
- W2800183743 hasAuthorship W2800183743A5017263799 @default.
- W2800183743 hasAuthorship W2800183743A5025427529 @default.
- W2800183743 hasAuthorship W2800183743A5036244057 @default.
- W2800183743 hasAuthorship W2800183743A5040965204 @default.
- W2800183743 hasAuthorship W2800183743A5041875771 @default.
- W2800183743 hasAuthorship W2800183743A5061971991 @default.
- W2800183743 hasAuthorship W2800183743A5066795351 @default.
- W2800183743 hasAuthorship W2800183743A5069253568 @default.
- W2800183743 hasAuthorship W2800183743A5070852717 @default.
- W2800183743 hasAuthorship W2800183743A5071032113 @default.
- W2800183743 hasConcept C121332964 @default.
- W2800183743 hasConcept C147789679 @default.
- W2800183743 hasConcept C153294291 @default.
- W2800183743 hasConcept C171250308 @default.
- W2800183743 hasConcept C17525397 @default.
- W2800183743 hasConcept C178790620 @default.