Abstract:
A dendrimer compound characterized by comprising a core represented by the following formula (1-1), (1-2), (1-3), or (1-4) and at least one kind of dendritic structure selected among dendritic structures represented by the following formulae (3) and (4).
Abstract:
A light emitting device containing an anode, a cathode, and a light emitting layer provided between the anode and the cathode is described. The light emitting layer contains a metal complex represented by formula (1).
Abstract:
A light emitting device includes an anode, a cathode, and first and second organic layers disposed between the anode and the cathode. The first organic layer is a layer obtained by using a composition including a compound represented by the formula (H-A) and a metal complex represented by the formula (1). The second organic layer is a layer obtained by using a polymer compound including a constitutional unit having a cross-linkable group. wherein the atoms, groups and rings in formulas (H-A) and (1) are defined in the specification.
Abstract:
A dendrimer compound characterized by comprising a core represented by the following formula (1-1), (1-2), (1-3), or (1-4) and at least one kind of dendritic structure selected among dendritic structures represented by the following formulae (3) and (4).
Abstract:
A compound having formula (1) has excellent heat resistance.
In formula (1), X represents a divalent polycyclic condensed ring group having two or more thiophene rings and having an sp3 carbon atom as a constituent element. R1 and R2 each represent an alkyl group, R3 represents an alkyl group, k represents an integer of 0 to 4, and A represents a group having formula (a1), (a2), or (b1):
R4, R5, R6, R7, R8, and R9 each represent an alkyl group, E1 and E2 each represent —C(R10)(R11)—, —C(O)—, —O—, or —NR12—. R10 and R11 each represent an alkyl group, R12 represents an alkyl group, m and n each represent 0 or 1, where m+n=1.
Abstract:
A composition which is useful for production of a light emitting device excellent in light emission efficiency is provided. In particular, provided is a composition containing a compound represented by formula (1) and a phosphorescent compound, wherein R1 and R2 each independently represent a substituent, n1 represents an integer of 1 to 14, and Ar1 represents an arylene group or a divalent heterocyclic group, and at least one of one or more groups Ar1 is a group represented by the formula (1-A), wherein the variable groups R1A to R8A, R91A, and R92A are as defined in the specification.