摘要:
An organic electroluminescent device is disclosed. The organic electroluminescent device comprises a substrate, an anode, a blue luminescent layer, and a cathode. The anode is disposed on the substrate. The blue luminescent layer is disposed on the anode. The cathode is disposed on the luminescent layer. The blue luminescent layer comprises a host, a first dopant and a second dopant. The first dopant and the second dopant are doped within the host. Because of the excellent blue light color and brightness of first dopant in blue luminescent layer and the longer lifetime of second dopant in blue luminescent layer, the organic electroluminance device of the present invention improves lifetime, luminescent efficiency, and brightness thereof.
摘要:
An organic electroluminescent element having double mixed layers. The organic electroluminescent element comprises at least a substrate, a first electrode, a first type carrier transport mixed layer, a first type carrier transport layer, an emitting layer, and a second electrode. The structure of the organic electroluminescent element according to the present invention is designed in order to lowers the operating voltage and extends the lifetime thereof, and the electroluminescent interference problems of conventional organic electroluminescent elements are solved thereby.
摘要:
An OLED including an anode layer, a first mixing layer over the anode layer, a mixing layer on the first mixing layer, a second mixing layer on the mixing layer, and a cathode layer over the second mixing layer is provided. The mixing layer is a mixture of an organic light emitting material, a hole and an electron transport material, and a volume ratio of the hole transport material to the electron transport material thereof is X %. The first and second mixing layers are both mixtures of the hole and electron transport materials. A volume ratio of the hole transport material to electron transport material in the first mixing layer decreases gradually from 99% to X % starting from the surface adhered to the anode layer, and that of the second mixing layer increases gradually from X % to 99% starting from the surface adhered to the mixing layer.
摘要:
A bottom and top emission OLED structure includes: first and second anodes; first and second organic light-emitting layers disposed between the first and second anodes. A first electrode may be disposed between the first and second organic light-emitting layers or first and second electrically isolated electrodes may be disposed between the first and second organic light-emitting layers.
摘要:
A bottom and top emission OLED structure includes: first and second anodes; first and second organic light-emitting layers disposed between the first and second anodes. A first electrode may be disposed between the first and second organic light-emitting layers or first and second electrically isolated electrodes may be disposed between the first and second organic light-emitting layers.
摘要:
A flat panel display comprising a liquid crystal module, a backlight module, and a transition film is disclosed. The backlight module provides light to the liquid crystal module, and the transition film is disposed above the liquid crystal module. The transition film comprises a material capable of filtering light of specific wavelengths. The material can be organic dye material phthal-ocyanine Copper (CuPc) or C32H16N8Cu. The transition film can be an evaporation layer, so the transition film can be formed on the polarizer of the liquid crystal module. The transition film has a transparency ratio with respect to blue light and a transparency ratio with respect to red light, and the ratios range from 0.5 to 0.95. The transparency ratio with respect to blue light is greater than that with respect to red light. The backlight module comprises one or more light emitting diodes (LEDs) to provide light.
摘要翻译:公开了一种包括液晶模块,背光模块和过渡膜的平板显示器。 背光模块向液晶模块提供光,并且过渡膜设置在液晶模块的上方。 过渡膜包括能够过滤特定波长的光的材料。 该材料可以是有机染料材料酞 - 碳菁铜(CuPc)或C 32 32 H 16 N 8 Cu。 过渡膜可以是蒸发层,因此可以在液晶模块的偏振器上形成过渡膜。 过渡膜相对于蓝光具有透明度比和相对于红光的透明度比,并且该比率在0.5至0.95的范围内。 相对于蓝光的透明度比大于红色光。 背光模块包括用于提供光的一个或多个发光二极管(LED)。
摘要:
A flat panel display comprising a liquid crystal module, a backlight module, and a transition film is disclosed. The backlight module provides light to the liquid crystal module, and the transition film is disposed above the liquid crystal module. The transition film comprises a material capable of filtering light of specific wavelengths. The material can be organic dye material phthal-ocyanine Copper (CuPc) or C32H16N8Cu. The transition film can be an evaporation layer, so the transition film can be formed on the polarizer of the liquid crystal module. The transition film has a transparency ratio with respect to blue light and a transparency ratio with respect to red light, and the ratios range from 0.5 to 0.95. The transparency ratio with respect to blue light is greater than that with respect to red light. The backlight module comprises one or more light emitting diodes (LEDs) to provide light.
摘要翻译:公开了一种包括液晶模块,背光模块和过渡膜的平板显示器。 背光模块向液晶模块提供光,并且过渡膜设置在液晶模块的上方。 过渡膜包括能够过滤特定波长的光的材料。 该材料可以是有机染料材料酞 - 碳菁铜(CuPc)或C 32 32 H 16 N 8 Cu。 过渡膜可以是蒸发层,因此可以在液晶模块的偏振器上形成过渡膜。 过渡膜相对于蓝光具有透明度比和相对于红光的透明度比,并且该比率在0.5至0.95的范围内。 相对于蓝光的透明度比大于红色光。 背光模块包括用于提供光的一个或多个发光二极管(LED)。
摘要:
An organic electroluminescent device, having a cathode, an indium-tin-oxide anode, an emitting layer, a hole transport layer, an electron transport layer, a hole injecting layer and a intermediate layer. The emitting layer is located between the cathode and the indium-tin-oxide anode. The hole transport layer is located between the emitting layer and the indium-tin-oxide anode, the electron transport layer is located between the emitting layer and the cathode, the hole injecting layer is located between the hole transport layer and the indium-tin-oxide anode, and the intermediate layer is located between the hole injecting layer and the hole transport layer.
摘要:
An apparatus and method for providing switched power to an AMOLED is disclosed. During certain time intervals, voltage and/or polarity provided to active devices such as thin film transistors (TFT) driving the AMOLEDs may be changed to reverse polarity or differ in absolute magnitude of voltage. During a subsequent time interval, the changed power may be changed again and/or reverted to an original state. It is emphasized that this abstract is provided to comply with the rules requiring an abstract which will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.
摘要:
Anthracene compounds and organic electroluminescent devices employing the same. Anthracene compounds can serve as host materials for an blue organic electroluminescent device. Furthermore, the anthracene compounds can also serve as hole transport layer materials or electron transport layer materials for organic electroluminescent devices, by way of the silyl phenyl group thereof.