Organic electroluminescence element and electronic device
An organic electroluminescence device includes an anode, an emitting layer and a cathode, in which the emitting layer includes a first compound and a second compound, the first compound is a delayed fluorescent compound, the second compound is a fluorescent compound, an emission quantum efficiency of the first compound is 70% or less, and an ionization potential Ip1 of the first compound and an ionization potential Ip2 of the second compound satisfy a relationship of 0≤Ip2−Ip1≤0.8 eV.
1. An organic electroluminescence device comprising:
an anode;
an emitting layer; and
a cathode,
wherein
the emitting layer comprises a first compound and a second compound,
the first compound is a delayed fluorescent compound,
the second compound is a fluorescent compound,
an emission quantum efficiency of the first compound is 70% or less, and
an ionization potential Ip1 of the first compound and an ionization potential Ip2 of the second compound satisfy a relationship of
0≤ Ip 2− Ip 1≤0.8 eV,
wherein the emitting layer further comprises a third compound, and a singlet energy of the third compound is larger than a singlet energy of the first compound.
2. The organic electroluminescence device according to claim 1 , wherein
the ionization potential Ip1 of the first compound and the ionization potential Ip2 of the second compound satisfy a relationship of
0≤ Ip 2− Ip 1≤0.5 eV.
3. The organic electroluminescence device according to claim 1 , wherein the emission quantum efficiency of the first compound is 65% or less.
4. The organic electroluminescence device according to claim 1 , wherein the emission quantum efficiency of the first compound is 60% or less.
5. The organic electroluminescence device according to claim 1 , wherein the emission quantum efficiency of the first compound is 30% or more.
6. The organic electroluminescence device according to claim 1 , wherein a singlet energy of the first compound is larger than a singlet energy of the second compound.
7. The organic electroluminescence device according to claim 1 , wherein the second compound has an emission peak wavelength of 550 nm or less.
8. An organic electroluminescence device comprising:
an anode;
an emitting layer; and
a cathode,
wherein
the emitting layer comprises a first compound and a second compound,
the first compound is a delayed fluorescent compound,
the second compound is a fluorescent compound,
an ionization potential Ip1 of the first compound and an ionization potential Ip2 of the second compound satisfy a relationship of
0≤ Ip 2− Ip 1≤0.3 eV
wherein the emitting layer further comprises a third compound, and a singlet energy of the third compound is larger than a singlet energy of the first compound.
9. The organic electroluminescence device according to claim 1 , further comprising: a hole transporting layer between the anode and the emitting layer.
10. The organic electroluminescence device according to claim 1 , further comprising: an electron transporting layer between the emitting layer and the cathode.
11. An electronic device comprising the organic electroluminescence device according to claim 1 .
12. The organic electroluminescence device according to claim 8 , further comprising: a hole transporting layer between the anode and the emitting layer.
13. The organic electroluminescence device according to claim 8 , further comprising: an electron transporting layer between the emitting layer and the cathode.
14. An electronic device comprising the organic electroluminescence device according to claim 8 .
15. The organic electroluminescence device according to claim 1 , wherein the ionization potential Ip1 of the first compound and the ionization potential Ip2 of the second compound satisfy a relationship of
0< Ip 2− Ip 1≤0.8 eV.
16. The organic electroluminescence device according to claim 1 , wherein the ionization potential Ip1 of the first compound and the ionization potential Ip2 of the second compound satisfy a relationship of
0< Ip 2− Ip 1≤0.5 eV.
17. The organic electroluminescence device according to claim 1 , wherein the first compound is not a metal complex.
18. The organic electroluminescence device according to claim 1 , wherein the emitting layer does not comprise a phosphorescent metal complex.
19. The organic electroluminescence device according to claim 1 , wherein a content ratio of the first compound in the emitting layer is in a range from 40 mass % to 60 mass %.
20. The organic electroluminescence device according to claim 1 , wherein
the emission quantum efficiency of the first compound is 30% or more,
the ionization potential Ip1 of the first compound and the ionization potential Ip2 of the second compound satisfy a relationship of
0< Ip 2− Ip 1≤0.8 eV, and
the emitting layer does not comprise a phosphorescent metal complex.
21. The organic electroluminescence device according to claim 1 , wherein
the emission quantum efficiency of the first compound is 30% or more,
a singlet energy of the first compound is larger than a singlet energy of the second compound,
the second compound has an emission peak wavelength of 550 nm or less,
the ionization potential Ip1 of the first compound and the ionization potential Ip2 of the second compound satisfy a relationship of
0< Ip 2− Ip 1≤0.5 eV, and
the emitting layer does not comprise a phosphorescent metal complex.