摘要:
A tandem organic electroluminescent device. The tandem organic electroluminescent device comprises a substrate having a pixel thin film transistor. A rib with chambered corners is formed on the substrate, surrounding a display region. A protrusion is formed in the display region. A plurality of organic light emitting diodes is stacked vertically in the display region, covering the protrusion, wherein each organic light emitting diode comprises a top electrode, an organic electroluminescent layer, and a bottom electrode. The bottom electrode of the bottommost organic light emitting diode is electrically connected to the pixel thin film transistor. A common electrode electrically connected to the top electrode of the topmost organic light emitting diode directly over the protrusion.
摘要:
A fluorescent dye, a structure of a fluorescent storage media and method using thereof, are disclosed. The fluorescent dye of the present invention comprises an organic violet fluorescent compound having a chemical structure (I) is suitable for using a short wavelength laser having a wavelength less than 500 nm as an excitation source. When a short wavelength laser is used for exciting the organic violet fluorescent compound (I), a fluorescence having an emission wavelength larger than 500 nm is induced, and a reading signal can be provided by detecting the intensity of the fluorescence radiation.
摘要:
A double sided display comprises a first substrate, a first organic light-emitting device (OLED) disposed on the first substrate, a first spacer, a second substrate, a second OLED disposed on the second substrate and a second spacer. The first and second spacers are disposed on the first and second substrates, and close to the first and second OLEDs, respectively. A height of the first spacer is larger than a thickness of the first OLED. A height of the second spacer is larger than a thickness of the second OLED. During assembly, the first substrate is disposed opposite to the second substrate, and the first spacer is disposed opposite to the second spacer. Also, the exact positions of the first and second spacers are determined for preventing the direct touch between the first and second OLEDs while the double sided display is deformed.
摘要:
A method of determining driving signals for a four-color organic electroluminescence device is provided. The driving signals are for displaying a predetermined color. A three-color organic electroluminescence device is a reference. The method comprises: a) defining a value of a white signal equal to the lowest value of a red reference signal, a green reference signal and a blue reference signal; b) defining a value of a red signal equal to the value difference between the red reference signal and the white signal, defining a value of a green signal equal to the value difference between the green reference signal and the white signal, defining a value of a blue signal equal to the value difference between the blue reference signal and the white signal; and c) adjusting the values of the red signal, the green signal or the blue signal for compensating color shifting.
摘要:
An organic electroluminescent display (OLED) panel includes a substrate having a first sub-pixel area, a second sub-pixel area, an organic electroluminescent device disposed on the substrate for generating light, and a first optical film and a second optical film disposed on the first sub-pixel area and the second sub-pixel area respectively. The light from the organic electroluminescent device produces a first color light and a second color light in the first sub-pixel area and the second sub-pixel area, respectively, after passing through optical films. The area of the first optical film is different from that of the second optical film.
摘要:
An organic light-emitting diode. The organic light-emitting diode includes a cathode, an anode, and an emitting layer disposed between the cathode and the anode, wherein the emitting layer comprises a bipolar compound and an assistant dopant. The invention also provides a display comprising the organic light-emitting diode.
摘要:
A photoelectric device. The photoelectric device includes a set of electrodes having at least two electrodes, and an electron-transporting layer installed between the set of electrodes, wherein the electron-transporting layer comprises an organic bipolar compound having electron/hole mobility exceeding 10−7 cm2v−1s−1 and a metal-containing material.
摘要:
An organic light emitting device is provided. The organic light emitting device includes a first electrode layer, a second electrode layer and a light emitting material layer. The second electrode layer is disposed opposite to the first electrode layer. The light emitting material layer is disposed between the first electrode layer and the second electrode layer, and includes an organic light emitting material and an electron transport material, wherein the electron transport material includes a compound represented by a formula (1) below: in which a group A represents an aromatic ring, a is 1, and a group B represents a nitrogen containing five-membered heterocyclic group and derivatives thereof, and has at least one nitrogen atom connected to a meta-position of the group A.
摘要:
A white organic electroluminescent element for an organic electroluminescent display and a display using the white organic electroluminescent are provided. The organic electroluminescent display comprises a white organic electroluminescent element and a color filter. The white organic electroluminescent element comprises an anode, a cathode, a capping layer, and an organic layer. The capping layer is disposed on the cathode. The organic layer is disposed between the anode and the cathode, and comprises a blue light emitting layer. The thickness of the organic layer is X+120N nm, wherein 85≦X≦125, and N=0, 1, or 2. The white organic electroluminescent element is configured to emit a white light. The color filter is configured to convert the white light to a first color beam, with the first color beam being either red, blue, or green.
摘要:
A white light electroluminescence device includes a first light emitting unit, a second light emitting unit and a connecting layer between the first and the second light emitting units. The connecting layer electrically connects the first and the second light emitting units in series. The first light emitting unit includes a first electrode layer and a first light emitting layer on the first electrode layer, wherein the first light emitting layer includes a first blue light emitting layer and a red light emitting layer having a first co-host material and a first dopant material. The second light emitting unit includes a second light emitting layer and a second electrode layer on the second light emitting layer, wherein the second light emitting layer has a second blue light emitting layer and a green light emitting layer having a second co-host material and a second dopant material.