Polymer compound, net-like polymer compound produced by crosslinking the polymer compound, composition for organic electroluminescence element, organic electroluminescence element, organic EL display, and organic EL lighting
An object of the invention is to provide a polymer compound having a high hole transport capacity, excellent in electrochemical stability, and suitable to film formation according to a wet film formation method. Another object of the invention is to provide an organic electroluminescence element having a high current efficiency, a low drive voltage, and a long derive lifetime. The polymer compound has a crosslinking group bonding to the arylamine moiety in the repeating unit via at least one single bond therebetween.
1. A polymer compound comprising a repeating unit represented by the following formula (II):
wherein p indicates an integer of from 0 to 3;
Ar 21 and Ar 22 each independently represent a direct bond, an aromatic hydrocarbon group optionally having a substituent, or an aromatic heterocyclic group optionally having a substituent;
Ar 23 to Ar 25 each independently represent an aromatic hydrocarbon group optionally having a substituent, or an aromatic heterocyclic group optionally having a substituent;
T 2 represents a group containing a group represented by the following formula (IV);
provided that Ar 21 and Ar 22 are not direct bonds at the same time;
further, when Ar 21 , Ar 22 and Ar 24 are fluorene rings optionally having a substituent, said fluorine ring does not have a group containing a crosslinking group as the substituent;
the cross-linking group is any of the groups selected from the following group of cross-linking groups;
wherein in R 21 to R 25 each independently represent a hydrogen atom or an alkyl group, Ar 41 represents an aromatic hydrocarbon group optionally having a substituent, or an aromatic heterocyclic group optionally having a substituent, the benzocyclobutene ring may have a substituent, and the substituents may together form a ring,
wherein the benzocyclobutene ring in the formula (IV) may have a substituent; and the substituents may bond to each other to form a ring.
2. The polymer compound as claimed in claim 1 , further comprising a repeating unit represented by the following formula (II′):
wherein q indicates an integer of from 0 to 3;
Ar 31 and Ar 32 each independently represent a direct bond, an aromatic hydrocarbon group optionally having a substituent, or an aromatic heterocyclic group optionally having a substituent,
Ar 33 to Ar 35 each independently represent an aromatic hydrocarbon group optionally having a substituent, an aromatic heterocyclic group optionally having a substituent;
provided that Ar 31 and Ar 32 are not direct bonds at the same time;
Ar 31 to Ar 35 do not have a group containing a group of the formula (IV) as the substituent;
further, when Ar 31 , Ar 32 and Ar 34 are fluorene rings optionally having a substituent, said fluorine ring does not have a group containing a crosslinking group as the substituent;
wherein the cross-linking group is any of the groups selected from the following group of cross-linking groups;
wherein in R 21 to R 25 each independently represent a hydrogen atom or an alkyl group, Ar 41 represents an aromatic hydrocarbon group optionally having a substituent, or an aromatic heterocyclic group optionally having a substituent, the benzocyclobutene ring may have a substituent, and the substituents may together form a ring.
3. A net-like polymer compound produced by crosslinking the polymer compound of claim 1 .
4. A composition for organic electroluminescence element, containing the polymer compound of claim 1 .
5. An organic electroluminescence element comprising, on a substrate, an anode, a cathode and an organic layer between the anode and the cathode,
wherein the organic layer comprises a layer containing the net-like polymer compound of claim 3 .
6. The organic electroluminescence element as claimed in claim 5 , wherein the layer containing the net-like polymer compound is a hole injection layer or a hole transport layer.
7. The organic electroluminescence element as claimed in claim 5 ;
wherein the organic layer comprises a hole injection layer, a hole transport layer and a light emission layer, and
all of the hole injection layer, the hole transport layer and the light emission layer are formed according to a wet film formation method.
8. An organic EL display, comprising the organic electroluminescence element of claim 5 .
9. An organic EL lighting, comprising the organic electroluminescence element of claim 5 .
10. A polymer compound comprising at least one repeating unit selected from a group of the following repeating units A, and
at least one repeating unit selected from a group of the following repeating units B: <Group of Repeating Units A>