Fluorescent powder for warm white LED and preparation method thereof
A fluorescent powder and warm white light technology, applied in the field of fluorescent powder, can solve the problems of difficult production of warm white fluorescent powder, high sintering temperature, difficult to control, and long cooling time of products, so as to achieve luminous brightness that is not easy to be damaged, product particles are small, Energy Saving Effect
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Embodiment 1
[0034] Embodiment 1: A kind of fluorescent powder for warm white light LED and preparation method thereof, it is characterized in that, comprise the following steps: S1, select raw material M(NO3)3; S2, add appropriate amount of glycine (NH2CH2COOH) and fully mix and carry out combustion reaction; S3 , put the obtained precursor in a mortar to grind and pulverize; S4, grind the mixture finely and put it into a calciner, place the calciner in a tube furnace, and heat it for calcining; S5, stop heating, cool down, and add MnCO3 , after grinding, then calcining and heating; S6, cooling, and after ball milling, washing and drying, phosphor powder for warm white LEDs is obtained.
[0035] In the above S1, M(NO3)3 is preferably yttrium nitrate, terbium nitrate, aluminum nitrate.
[0036] In said S2, the reaction chemical equation:
[0037] 3M(NO3)3+5NH2CH2COOH→1.5M2O3+7N2+10CO2+12.5H2O,
[0038] 2M(NO3)3→M2O3+6NO2+1.5O2.
[0039] In S4, the temperature of the calciner is 1000°C, ...
Embodiment 2
[0047] Embodiment 2: A kind of fluorescent powder for warm white light LED and preparation method thereof, it is characterized in that, comprises the following steps: S1, select raw material M(NO3)3; S2, add appropriate amount of glycine (NH2CH2COOH) and fully mix and carry out combustion reaction; S3 , put the obtained precursor in a mortar to grind and pulverize; S4, grind the mixture finely and put it into a calciner, place the calciner in a tube furnace, and heat it for calcining; S5, stop heating, cool down, and add MnCO3 , after grinding, then calcining and heating; S6, cooling, and after ball milling, washing and drying, phosphor powder for warm white LEDs is obtained.
[0048] In the above S1, M(NO3)3 is preferably yttrium nitrate, terbium nitrate, aluminum nitrate.
[0049] In said S2, the reaction chemical equation:
[0050] 3M(NO3)3+5NH2CH2COOH→1.5M2O3+7N2+10CO2+12.5H2O,
[0051] 2M(NO3)3→M2O3+6NO2+1.5O2.
[0052] In S4, the temperature of the calciner is 1000-17...
Embodiment 3
[0060] Embodiment 3: A kind of fluorescent powder for warm white light LED and preparation method thereof, it is characterized in that, comprises the following steps: S1, select raw material M(NO3)3; S2, add appropriate amount of glycine (NH2CH2COOH) and fully mix and carry out combustion reaction; S3 , put the obtained precursor in a mortar to grind and pulverize; S4, grind the mixture finely and put it into a calciner, place the calciner in a tube furnace, and heat it for calcining; S5, stop heating, cool down, and add MnCO3 , after grinding, then calcining and heating; S6, cooling, and after ball milling, washing and drying, phosphor powder for warm white LEDs is obtained.
[0061] In the above S1, M(NO3)3 is preferably yttrium nitrate, terbium nitrate, aluminum nitrate.
[0062] In said S2, the reaction chemical equation:
[0063] 3M(NO3)3+5NH2CH2COOH→1.5M2O3+7N2+10CO2+12.5H2O,
[0064] 2M(NO3)3→M2O3+6NO2+1.5O2.
[0065] In S4, the temperature of the calciner is 1000-17...
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