Abstract:
This invention relates to deuterated compounds that are useful in electroluminescent applications. It also relates to electronic devices in which the active layer includes such a deuterated compound.
Abstract:
There is disclosed a compound having Formula I or Formula I': In Formula I and Formula I': Ar 1 and Ar 2 are the same or different and are aryl groups; R 1 through R 5 are independently the same or different at each occurrence and are D, F, alkyl groups, aryl groups, alkoxy groups, silyl groups, or crosslinkable groups; R 6 is H, D, or halogen; a through e are independently an integer from 0 to 4; f is 1 or 2; g is 0, 1 or 2; h is 1 or 2; and n is an integer greater than 0.
Abstract:
There is proviced a hole transport compound having Formula I or Formula II: (Ar 2 ) 2 N-Ar 1 -[T] n -Ar 1 N(Ar 2 ) 2 Formula I (Ar 2 ) 2 N-Ar 1 -[T] m -Ar 1 -N-Ar 1 [T] n -Ar 1 -N(Ar 2 ) 2 Formula II Ar 1 is the same or different at each occurrence and can be phenylene, naphthylene, or binaphthylene. Ar 2 is the same or different at each occurrence and can be phenyl, biphenyl, terphenyl, naphthyl, or binaphthyl. m and n are the same or different and are an integer greater than 0. T is the same or different at each occurrence and is a conjugated moiety including at least one triarylamino group. The T moiety is connected in a non-planar configuration.
Abstract translation:证明具有式I或式II的空穴传输化合物:(Ar2)2N-Ar1- [T] n -Ar1N(Ar2)2式I(Ar2)2N-Ar1- [T] m-Ar1-N-Ar1 [T] n -Ar 1 -N(Ar 2)2式II Ar 1在每次出现时相同或不同,可以是亚苯基,亚萘基或亚萘基。 Ar2在每次出现时相同或不同,可以是苯基,联苯基,三联苯基,萘基或联萘。 m和n相同或不同,为大于0的整数.T在每次出现时相同或不同,为包含至少一个三芳基氨基的共轭部分。 T部分以非平面构型连接。
Abstract:
There is provided a process for forming a contained second layer over a first layer, including the steps: forming the first layer having a first surface energy; forming an intermediate layer over and in direct contact with the first layer, said intermediate layer having a second surface energy which is lower than the first surface energy; removing selected portions of the intermediate layer to form a pattern comprising uncovered areas of the first layer and covered areas of the first layer; and forming a contained second layer over the uncovered areas of the first layer. There is also provided an organic electronic device made by the process.
Abstract:
The invention relates to conductive polymer composites comprising a first layer comprising at least one electrically doped conductive polymer and a second layer comprising at least one material selected from a colloid-forming polymeric acid, a salt of a colloid-forming polymeric acid, a non-polymeric fluorinated organic acid, and a salt of a non-polymeric fluorinated organic acid.
Abstract:
The present invention is generally directed to electroluminescent Pt(II) complexes which have emission maxima across the visible spectrum, and devices that are made with the Pt(II) complexes.
Abstract:
The present invention is generally directed to electroluminescent Ir(III) complexes which have emission maxima in the red-orange to red region of the visible spectrum, and devices that are made with the Ir(III) complexes.
Abstract:
This invention relates to deuterated aryl-anthracene compounds that are useful in electronic applications. It also relates to electronic devices in which the active layer includes such a deuterated compound.
Abstract:
An organic light-emitting diode is provided having an anode, a cathode, and an organic active layer therebetween. The organic active layer includes a deuterated compound and the device has a calculated half-life at 1000nits of at least 5000 hours.
Abstract:
There is provided an organic light-emitting diode luminaire. The luminaire includes a patterned first electrode, a second electrode, and a light-emitting layer therebetween. The light-emitting layer includes a first plurality of pixels having a first emitted color; and a second plurality of pixels having a second emitted color, the second plurality of pixels being laterally spaced from the first plurality of pixels. In the luminaire the pixels have a pitch no greater than 200 microns. The additive mixing of all the emitted colors results in an overall emission of white light.