Green light-emitting fluorescent powder and preparation method thereof
A phosphor and green technology, applied in the field of green luminescent phosphor and its preparation, can solve the problems of intolerant ultraviolet radiation, demanding synthesis conditions and high synthesis temperature, and achieve the effects of energy saving, low preparation temperature and simple operation
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Embodiment 1
[0028] Example 1Ca 0.90 Tb 0.05 Na 0.05 O Green Luminescent Phosphor Powder
[0029] Weigh calcium carbonate CaCO 3 0.9008g, terbium oxide Tb 4 o 7 0.0935g, boric acid H 3 BO 3 0.1021g (10%) and sodium carbonate Na 2 CO 3 0.0265g. After the above-mentioned substances are fully ground in an agate mortar, they are put into a corundum crucible, and the volume ratio is 95:5 N 2 and H 2 Calcined at 900°C for 5 hours in a reducing atmosphere formed by a mixed gas, cooled naturally to room temperature, and ground to obtain white powder Ca 0.90 Tb 0.05 Na 0.05 O green luminescent phosphor.
[0030] Ca prepared in this example 0.90 Tb 0.05 Na 0.05 The excitation spectrum of O green luminescent phosphor is as followsfigure 1 As shown in 11, the emission spectrum is as figure 2 As shown in 21, it can be seen that the green luminescent material of this embodiment has a very high luminous intensity when excited by the excitation light with a wavelength of 172nm.
Embodiment 2
[0031] Example 2Ca 0.86 Gd 0.02 Tb 0.05 Na 0.07 O Green Luminescent Phosphor Powder
[0032] Weigh calcium carbonate CaCO 3 0.8608g, terbium oxide Tb 4 o 7 0.0935g, boric acid H 3 BO 3 0.1028g (10%), sodium carbonate Na 2 CO 3 0.0371g and gadolinium oxide Gd 2 o 3 0.0363g. After the above-mentioned substances are fully ground in an agate mortar, they are put into a corundum crucible, and the volume ratio is 95:5 N 2 and H 2 Calcined at 900°C for 5 hours in a reducing atmosphere formed by a mixed gas, cooled naturally to room temperature, and ground to obtain white powder Ca 0.86 Gd 0.02 Tb 0.05 Na 0.07 O green luminescent phosphor.
[0033] Ca prepared in this example 0.86 Gd 0.02 Tb 0.05 Na 0.07 The excitation spectrum of O green luminescent phosphor is as follows figure 1 As shown in 12, the emission spectrum is as figure 2 As shown in 22, it can be seen that the green luminescent material of this embodiment has a very high luminous intensity when ex...
Embodiment 3
[0034] Example 3Ca 0.76 Gd 0.02 Tb 0.10 Na 0.12 O Green Luminescent Phosphor Powder
[0035] Weigh calcium carbonate CaCO 3 0.7607g, terbium oxide Tb 4 o 7 0.1870g, boric acid H 3 BO 3 0.1048g (10%), sodium carbonate Na 2 CO 3 0.0636g and gadolinium oxide Gd 2 o 3 0.0363g. After the above-mentioned substances are fully ground in an agate mortar, they are put into a corundum crucible, and the volume ratio is 95:5 N 2 and H 2 Calcined at 1000°C for 5 hours in a reducing atmosphere formed by a mixed gas, naturally cooled to room temperature, ground, and then calcined at 900°C for 5 hours, naturally cooled to room temperature, ground to obtain white powder Ca 0.76 Gd 0.02 Tb 0.10 Na 0.12 O green luminescent phosphor.
[0036] image 3 Is the Ca prepared in this example 0.76 Gd 0.02 Tb 0.10 Na 0.12 Afterglow lifetime diagram of O green luminescent phosphor, such as image 3 As shown, the afterglow life τ = 2.4807ms, the afterglow time is short, which is bene...
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