Preparation method of LED (light-emitting diode) fluorescent powder
A phosphor and solution technology, applied in chemical instruments and methods, luminescent materials, etc., can solve the problems of irregular particle shape, narrow phosphor band, and uneven powder particle size, and achieve uniform powder particle size and fluorescence. The effect of high conversion efficiency and regular particle shape
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[0015] A kind of preparation method of LED fluorescent powder of the present invention, comprises the steps:
[0016] (1). Dissolve ytterbium oxide, cerium oxide, and lutetium oxide in concentrated nitric acid in proportion to prepare a solution, and add aluminum nitrate solution to obtain mother liquor;
[0017] (2). Using urea as a precipitating agent and sodium metaphosphate as a dispersing agent, control the temperature and time to completely precipitate ytterbium and aluminum ions to obtain an amorphous precursor;
[0018] (3). The amorphous precursor is calcined and directly crystallized into a single-phase powder, then ground and pulverized, then added with a sintering aid, and sintered in a hydrogen-nitrogen reducing atmosphere;
[0019] (4). White light LED phosphor obtained by crushing, washing and sieving after cooling.
[0020] In step (1), the aluminum nitrate solution is added according to the total amount of ytterbium plus ytterbium and the ion ratio of aluminu...
Embodiment 1
[0022] In this embodiment, the molar ratio of urea to metal salt ions is 30:1; the calcination temperature of the amorphous precursor is 800° C.; the sintering temperature in a hydrogen-nitrogen reducing atmosphere is 1675° C.
Embodiment 2
[0024] In this embodiment, the molar ratio of urea to metal salt ions is 2:1; the calcination temperature of the amorphous precursor is 700° C.; the sintering temperature in a hydrogen-nitrogen reducing atmosphere is 1600° C.
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