Blue light excited green fluorescent powder for white light light-emitting diode (LED) and preparing method thereof
A green fluorescent powder and blue light excitation technology, applied in the field of green fluorescent powder, can solve problems such as poor color rendering and weak luminous intensity, and achieve the effects of improved luminous brightness and intensity, simple operation, and high commercial use value
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2012-10-31
- Estimated Expiration
- Not applicable · inactive patent
Smart Images
Figure 1 Figure 2
Abstract
Description
technical field
[0001] The invention relates to a green fluorescent powder for white LEDs excited by blue light, and provides a preparation method of the fluorescent powder, which belongs to the field of luminescent materials or the field of semiconductor lighting. Background technique
[0002] White LEDs can be obtained by coating highly efficient phosphors that can be effectively excited by blue light and emit yellow light on the blue LED chips. The successful research of white LED light source has created conditions for the application of LED in general lighting. White light LED is also known as the fourth-generation green lighting source. Compared with traditional incandescent and fluorescent lamps, it has many advantages: such as solidification, small size, long life, durability, stable performance, fast luminous response, impact resistance, etc. , so it is widely used in general lighting, indicator lights, signal lights and other fields.
[0003] There are many ways ...
Examples
Embodiment 1
[0018] Embodiment 1: take by weighing Sc 2 o 3 7.935g, CaCO 3 5.405g, BaCO 3 21.680g, CeO 2 1.720g, H 2 SiO 3 9.275g, H 3 BO 3 0.092g, LiF0.005g, the above raw materials are all analytically pure, add deionized water to the above raw materials for wet mixing, then ball mill for 10h, and then dry, at 1200 ° C, H 2 and N 2 Calcined for 3h under the mixed gas reducing condition, where H 2 Accounting for 5% of the total volume of the mixed gas, the molecular composition is Ca 1.080 Ba 2.192 sc 2.302 Si 2.378 o 11.356 : Ce 0.002 sample.
Embodiment 2
[0019] Example 2: The weighed raw materials, flux content and manufacturing method are the same as in Example 1, the difference is that the calcination temperature is 1000°C, and the obtained molecular composition is Ca 1.080 Ba 2.192 sc 2.302 Si 2.378 o 11.356 : Ce 0.002 sample.
Embodiment 3
[0020] Example 3: The weighed raw materials, flux content and manufacturing method are the same as in Example 1, the difference is that the calcination temperature is 1300°C, and the molecular composition is Ca 1.080 Ba 2.192 sc 2.302 Si 2.378 o 11.356 : Ce 0.002 sample.