COMPOUND HAVING TRIPHENYLAMINE STRUCTURE, AND ORGANIC ELECTROLUMINESCENT DEVICE
申请人:Yokoyama Norimasa
公开号:US20120292609A1
公开(公告)日:2012-11-22
There is provided an organic compound of excellent characteristics that exhibits excellent hole-injecting/transporting performance and has an electron blocking ability and a highly stable thin-film state with excellent heat resistance. The compound of the present invention is an arylamine compound having a triphenylamine structure. The arylamine compound is used as a constituent material of at least one organic layer in an organic electroluminescent device that includes a pair of electrodes, and one or more organic layers sandwiched between the pair of electrodes.
COMPOUND WITH TRIPHENYLAMINE STRUCTURE, AND ORGANIC ELECTROLUMINESCENT ELEMENT
申请人:Hodogaya Chemical Co., Ltd.
公开号:EP2530069B1
公开(公告)日:2016-09-14
ORGANIC ELECTROLUMINESCENT DEVICE
申请人:Yokoyama Norimasa
公开号:US20140021451A1
公开(公告)日:2014-01-23
An organic electroluminescent device comprises, between an anode and a cathode, a hole injection layer, a hole-transporting layer, a luminous layer and an electron-transporting layer, wherein the hole injection layer contains an arylamine compound (α) having three or more triphenylamine skeletons, the hole-transporting layer contains an arylamine compound (β) having two triphenylamine skeletons, and the electron-transporting layer contains an electron-transporting compound having an anthracene ring skeleton and a pyridoindole ring skeleton. The organic EL device emits light highly efficiently, drives on a low voltage, and features excellent durability and long life.
US9196839B2
申请人:——
公开号:US9196839B2
公开(公告)日:2015-11-24
Explicit analysis of functional group orientation in amorphous organic semiconductor films by using deuterated materials
to amorphous organicmaterials. Because the functionalgroup orientation has not been discussed in detail, the relationship between the electrical properties of the films and the molecular orientation of amorphous organicmaterials remains unclear. In this study, to solve the ambiguity of molecular orientation, we investigate the functionalgroup orientation of a hole transport material for OLEDs in