The present invention relates to an organic electroluminescent device, and more particularly to an organic electroluminescent device used for maintaining the structure thereof, and improving the production yield.
According to vigorous development of optoelectronics industry, people enjoy the convenient of such technology. However, how to obtain a flat display with high definition and low cost, is the object for the each manufacture. With in various displays, organic electroluminescent device has the benefits with self illumination, high brightness, wide viewing angle, low power consumption, high response speed, thin film panel, and simple element structure, according to comparison with other display skill. Therefore, such has more eyes from research organizations and manufactures.
According to various displays, how to obtain full-color display, is the key point for success. As the organic electroluminescent device, there are three general methods for obtaining full-color display as following descriptions.
1. Three color lighting layer structure: such comprises self illumination organic light emitting elements for three primary colors as Red (R), Green (G), and Blue (B) to obtain full-color display.
2. Color change media (CCM): such has a light source from a blue organic light emitting element, and luminesces a light color conversion film according to the blue light for obtaining the three primary colors (RGB) to achieve full-color display.
3. Color filter (CF): such has a white color organic light emitting element as a backlight source, and coordinates with a color filter, thus, when the color filter is illuminated from the backlight source, the full-color display can be achieved.
Referring to
However, the barrier layer 19 can be made selectively by a Silicon Oxide, a Silicon Nitride, or a Silicon-Oxy-Nitride. Therefore, the barrier layer 19 is easily to be broken, and when the organic electroluminescent 200 is displaying, the dark spots will be occurred, thus, the yield of production will also be affected.
Accordingly, how to design a novel organic electroluminescent device with respect to the previous mentioned shortcomings of the prior art, preventing the barrier layer broken and advantaging the lower electrode provided, is the key point of the present invention. Therefore,
It is a primary object of the present invention to provide an organic electroluminescent device, comprising a color filter without a barrier layer provided, thus, the barrier layer will not be broken within the color filter.
It is a secondary object of the present invention to provide an organic electroluminescent device, comprising an isolation layer provided on the surface of a color filter, thus, the lower electrode will be advantageously provided on the partial surface of the color filter.
To achieve the previous mentioned objects, the present invention provides an organic electroluminescent device, comprising a color filter, comprising at least one color resist provided on the surface of a transmittance substrate; an overcoat layer provided on the partial surface; at least one isolation layer provide on the partial surface of the overcoat layer, and a lower electrode provided on the surface of the isolation layer; an organic light emitting layer provided on the partial surface of the lower electrode; and at least one opposite electrode provided on the surface of the organic light emitting layer.
To achieve the previous mentioned objects, the present invention further provides an organic electroluminescent device, comprising a color filter, comprising at least one color resist provided on the surface of a transmittance substrate; an overcoat layer provided on the partial surface; at least one isolation layer made by a metal material with light transmittance and electrical conductibility, and provide on the partial surface of the overcoat layer, and a lower electrode provided on the surface of the isolation layer; an organic light emitting layer provided on the partial surface of the lower electrode; at least one opposite electrode provided on the surface of the organic light emitting layer; and a sealing plate provided on the surface of the overcoat layer of the color filter.
It will be understood that the figures are not to scale since the individual layers are too thin and the thickness differences of various layers too great to permit depiction to scale.
The structural features and the effects to be achieved may further be understood and appreciated by reference to the presently preferred embodiments together with the detailed description.
Referring to
At least one isolation layer 47 is provided on the partial surface of the overcoat layer 37 of the color filter 30. And, the surface of the isolation layer 47 comprises a lower electrode 41 within the organic light emitting element 40. An organic light emitting layer 43 is provided on the partial surface of the lower electrode 41. After providing the organic light emitting layer 43, an opposite electrode 45 is provided on the surface of the organic light emitting layer 43.
Wherein, the surface of the overcoat layer 37 of the color filter 30 is without a barrier layer provided 19, such that can prevent the barrier layer 19 broken as the prior art structure. Thus, the organic electroluminescent device 400 won't occur the dark spots according to the barrier layer 19 broken, and further improve the yield of production.
The lower electrode 41 connects to the overcoat layer 37 through the isolation layer 47. And, the isolation layer 47 is made by a metal material with light transmittance and electrical conductibility, such as chromium, nickel, molybdenum, and a combination thereof. Of course, due to another embodiment of the present invention, the isolation layer 47 can be also as a chemical compound, which comprises the chromium, nickel, and molybdenum. And, within application, the transmittance of the isolation layer 47 is larger than 70% for advantaging the color light source illumination efficiency from the organic light emitting element 40, and maintaining the display brightness of that. The lower electrode 41 is made by a material with light transmittance and electrical conductibility, such as ITO, IZO, IWO, and AZO.
Finally, referring to
In summary, it is appreciated that the present invention is related to an organic electroluminescent device, and more particularly to an organic electroluminescent device used for maintaining the structure thereof, and improving the production yield.
The foregoing description is merely one embodiment of present invention and not considered as restrictive. All equivalent variations and modifications in process, method, feature, and spirit in accordance with the appended claims may be made without in any way from the scope of the invention.
Number | Date | Country | Kind |
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094129080 | Aug 2005 | TW | national |