With the rapid development of semiconductor technology, various new types of LEDs (light-emitting diodes) are challenging the incandescent lamps. In the near future, people will usher in a new era of more brilliant lighting. In our lives and work today, people are already familiar with LEDs. It can be seen on the control panel of computers, audio equipment, and various displays. Red, yellow, blue and other LEDs of different colors keep blinking, indicating the working state of the machine. Today, modern lighting requires us to reproduce a light-emitting diode that emits white light based on the development of red, yellow and blue light. In order to obtain LEDs that emit white light, the scientists have conceived three schemes: one is to produce white light through a mixture of three kinds of light of red, yellow and blue; the other is to emit white light by blue light photon triggering phosphor; the third is to integrate the first two A method of designing a "photon recycling" device to produce white light. After argumentation, all three options are feasible. Now, the problem that needs to be solved is to find the easiest, most productive, and most profitable method. To this end, people are working hard to explore. Experiments have shown that LED lighting can directly convert electrical energy into light energy. Therefore, it has more advantages than incandescent lamps that are commonly used today. As we all know, on October 21, 1879, the incandescent lamp invented by American scientist Edison made people bid farewell to the darkness of the night and entered the era of electric lighting. However, incandescent lamps are used to illuminate people by burning red and glowing tungsten wires. When the tungsten wire is burnt red, there is a high temperature of 3000 °C. Tungsten filaments are constantly being vaporized while constantly emitting light at high temperatures. When it is vaporized to a very thin, finally broken, the life of the bulb ends. According to some statistics, an incandescent lamp only converts 12%-18% of its own electrical energy into light energy, and the rest are lost in the form of heat. Such a lighting method makes the incandescent lamp have the lowest power utilization rate among all the electric lighting fixtures. Moreover, incandescent lamps operate at high temperatures and typically do not exceed 1000 hours of service life. For LEDs, the luminous efficiency can reach 50 to 100 times that of incandescent lamps, and the service life can reach 50,000 to 100,000 hours, which is 5 to 10 years. In this way, the contrast between the two is very different. It has also been reported that researchers have recently developed an organic light-emitting diode OLED, which has greatly advanced the manufacturing technology of light-emitting diodes. The current light emitting diodes are processed from inorganic crystalline structural materials. The new type of organic light-emitting diodes replace the crystalline structural materials with plastic polymers. Since the thickness of the plastic polymer material can reach one tenth of a millimeter, the light-emitting device used for processing will have the advantages of fast running speed, light weight, high brightness, low power consumption, etc., and is very Sturdy and exceptionally shock resistant. The advent of organic light-emitting diodes is not only used for lighting, but also has a very broad space for development in notebook computers, high-definition televisions, personal data assistants and third-generation wireless Internet phones.


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