Eu<3+> ion-activated fluorescent material and preparation and application thereof
A technology of fluorescent materials and ions, applied in the direction of luminescent materials, chemical instruments and methods, electrical components, etc., can solve problems such as insufficient red light emission, high correlated color temperature color rendering index, limitations, etc., and achieve excellent luminous performance and good luminous efficiency , the effect of strong excitation efficiency
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Embodiment 1
[0035] This embodiment provides a Eu 3+ Ion-activated phosphor with the chemical formula LaGd 0.55 Eu 0.45 YO 4 Cl 5 . According to the stoichiometric ratio of each cationic element in the chemical formula, weigh lanthanum chloride LaCl 3 : 2.45 g, gadolinium chloride GdCl 3 : 2.636 g, europium oxide Eu 2 o 3 : 0.792 g, yttrium chloride YCl 3 : 1.95 g, Titanium Dioxide TiO 2 : 0.8 g. The above Eu was prepared as follows 3+ Ion Activated Phosphors:
[0036] The weighed raw materials were wet-milled with acetone as a grinding aid, dried, and then the resulting mixture was pressed into blocks. Calcining the obtained briquette in an air atmosphere, the calcination temperature is 1250°C, and the calcination time is 6 hours, to obtain Eu 3+ Ion activated phosphor LaGd 0.55 Eu 0.45 YO 4 Cl 5 .
[0037] figure 1 is the X-ray powder diffraction pattern of the above product, and the XRD test result shows that the prepared material is a single-phase material without im...
Embodiment 2
[0043] This embodiment provides a Eu 3+ Ion-activated phosphor with the chemical formula LaGd 0.999 Eu 0.001 YO 4 Cl 5 . According to the stoichiometric ratio of each cationic element in the chemical formula, weigh lanthanum chloride LaCl 3 : 7.35 g, gadolinium oxide Gd 2 o 3 : 5.437 grams, europium nitrate Eu (NO 3 ) 3 ·6H 2 O: 0.0134 g, yttrium chloride YCl 3 : 5.85 g, Titanium Dioxide TiO 2 : 2.401 g. The above Eu was prepared as follows 3+ Ion Activated Phosphors:
[0044] The weighed raw materials were wet-milled in an agate mortar with acetone as a grinding aid, dried, and the obtained mixture was pressed into blocks. Calcining the obtained briquette in an air atmosphere, the calcination temperature is 1350°C, and the calcination time is 4 hours, to obtain Eu 3+ Ion activated phosphor LaGd 0.999 Eu 0.001 YO 4 Cl 5 . Its main structural properties, excitation spectrum, and luminescence spectrum are similar to those of Example 1.
Embodiment 3
[0046] This embodiment provides a Eu 3+ Ion-activated phosphor with the chemical formula LaEuYTiO 4 Cl 5 . According to the stoichiometric ratio of each cationic element in the chemical formula, weigh lanthanum chloride LaCl 3 : 4.9 g, europium oxide Eu 2 o 3 : 3.52 g, yttrium chloride YCl 3 : 3.9 g, Titanium Dioxide TiO 2 : 1.6g. The above Eu was prepared as follows 3+ Ion Activated Phosphors:
[0047] The weighed raw materials were wet-milled with acetone as a grinding aid, dried, and the obtained mixture was pressed into blocks. Calcining the obtained briquette in an air atmosphere, the calcination temperature is 1400°C, and the calcination time is 1 hour, to obtain Eu 3+ Ion activated phosphor LaEuYTiO 4 Cl 5 . Its main structural properties, excitation spectrum, and luminescence spectrum are similar to those of Example 1.
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