| Literature DB >> 29498664 |
Tiago Palmeira1, Alexandre S Miranda2,3, Paula M Marcos4,5, Mário N Berberan-Santos6.
Abstract
Thermally activated delayed fluorescence (TADF) of 12C70 and 13C70 was observed up to 140 °C in a p-tert-butyldihomooxacalix[4]arene solid matrix, a temperature range significantly higher than that of previous TADF quantitative studies. An effective singlet-triplet energy gap of 29 kJ/mol and triplet formation quantum yields of 0.97 and 0.99 were measured for 12C70 and 13C70, respectively. The photophysical properties of the two fullerenes in this new matrix are comparable to those obtained in polystyrene at a lower temperature range. Calixarenes are proposed to be suitable matrices for high temperature TADF studies and applications.Entities:
Keywords: fullerene C70; homooxacalixarenes; organic light-emitting diodes (OLEDs); thermally activated delayed fluorescence (TADF)
Mesh:
Substances:
Year: 2018 PMID: 29498664 PMCID: PMC6017425 DOI: 10.3390/molecules23030558
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of fullerene C70 and of p-tert-butyldihomooxacalix[4]arene.
Figure 2Absorption and emission spectra of DHOC4 (black line) and 12C70 (red line) in dichloromethane (a) and of 12C70 in DHOC4 (black line) and PS (red line) (b).
Fluorescence (τF) and delayed fluorescence (τDF) lifetimes of 12C70 and 13C70 in DHOC4 and PS at room temperature.
| 12C70 | 13C70 | |||
|---|---|---|---|---|
| Matrix | DHOC4 | PS | DHOC4 | PS |
| 0.54 | 0.63 | 0.62 | 0.63 | |
| 20 | 24 | 32 | 41 | |
Figure 3Dependence of TADF emission with the temperature for 12C70 (a) and 13C70 (b) in DHOC4 host medium.
IDF/IPF values of 12C70 and 13C70 in DHOC4 and PS.
| 12C70 | 13C70 | |||
|---|---|---|---|---|
| T (°C)/Matrix | DHOC4 | PS | DHOC4 | PS |
| 25 | 8.54 | 40.5 | 31.4 | 58.9 |
| 60 | 17.5 | 93.3 | 54.3 | 131 |
| 95 | 25.3 | 139 | 79.2 | 198 |
| 140 | 31.4 | — | 109 | — |
Figure 4IDF/IPF versus temperature for 12C70 (a) and 13C70 (b) in DHOC4 (red) and PS (black). The lines correspond to Equation (2).
Figure 5τDF versus temperature for 12C70 (black dots) and 13C70 (red dots) in DHOC4.
Figure 6Arrhenius plot for 12C70 (black dots) and 13C70 (red dots) in DHOC4.
Photophysical parameters of 12C70 and 13C70 in DHOC4 and PS.
| 12C70 | 13C70 | |||
|---|---|---|---|---|
| Matrix | DHOC4 | PS | DHOC4 | PS |
| ΔEST (kJ/mol) 1 | 26 | 29 | 23 | 28 |
| ΔEST (kJ/mol) 2 | 29 | 31 | 29 | 31 |
| 0.973 | 0.995 | 0.994 | 0.997 | |
| 0.971 | 0.995 | 0.992 | 0.996 | |
| 1.8 × 109 | 1.6 × 109 | 1.6 × 109 | 1.6 × 109 | |
| A (s−1) 2 | 5.9 × 107 | 4.0 × 108 | 1.2 × 108 | 4.8 × 108 |
| 25 | 31 | 33 | 51 | |
1 from Equation (1). 2 from Equation (5). 3 from Equation (4).