Phosphorescent metal complex compound, method for the preparation thereof and radiating component
A phosphorescent metal complex compound, a method for the preparation thereof and a radiation component, in particular an organic light emitting electrochemical cell (OLEEC) use a bidentate ligand containing a triazole unit. Some of the blue emitters shown here for the first time, in particular the class of iridium complex compounds presented here, are the bluest emitters that have ever existed.
1. A light-emitting organic electrochemical cell comprising:
a substrate;
a first electrode layer on the substrate;
at least one organic emitting layer on the first electrode layer; and
a second electrode layer on the organic emitting layer, wherein each organic emitting layer comprises a charged phosphorescent metal complex having the structural formula:
where:
M=Ir, Re, Os, Pt, Au, Hg, Ru, Rh, Pd, Ag, or Cu,
Z 1 =C, Z 2 =N,
Aryl=any partly or fully substituted aromatic or heteroaromatic radical which may also be fused, may form a bridge to a further compound, may be fused and/or annelated to further aromatic or heteroaromatic systems, and/or may be bonded to further cyclic compounds,
and one of (a) and (b):
(a) Y=N and R 1 and R 2 are independently selected from the group consisting of H, alkyl radicals, alkoxy groups, amines, amides, esters, carbonates, aromatic systems, heteroaromatic systems, halogens and pseudohalogens,
(b) Y=C and R 1 and R 2 are independently selected from the group consisting of H, alkyl radicals, alkoxy groups, amines, amides, esters, carbonates, aromatic systems, heteroaromatic systems, halogens and pseudohalogens.
2. The electrochemical cell as claimed in claim 1 , wherein the metal complex has at least two metallic central atoms that are bridged.
3. The electrochemical cell as claimed in claim 1 , wherein the metal complex is multinuclear and has at least two metallic central atoms M.
4. The electrochemical cell as claimed in claim 1 , wherein
the metal complex contains a bridging ligand, and
the at least two metallic central atoms M are linked via the bridging ligand.
5. The electrochemical cell as claimed in claim 1 , wherein the phosphorescent metal complex is present in a matrix material.
6. The electrochemical cell as claimed in claim 1 , wherein when a voltage is applied between the first and second electrode layers, the at least one organic emitting layer emits light with a color selected from the group consisting of green, blue-green, and blue.
7. The electrochemical cell as claimed in claim 1 , wherein the substrate and the first electrode layer are transparent.