Fluorescent material, preparation method thereof and method for measuring temperature
A fluorescent material and energy technology, which is applied in the direction of luminescent materials, thermometers, measuring devices, etc., can solve the problems of rare and unfavorable rapid temperature measurement and analysis, and achieve the effects of improved accuracy, scientific and reasonable preparation method, and good effect
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example 1
[0032] Example 1: The chemical formula is Nd 0.02 Gd 0.98 TaO 4 Preparation of fluorescent materials
[0033] Weigh 0.0418g of Nd 2 o 3 , 2.2096g of Gd 2 o 3 and 2.7485g of Ta 2 o 5 Mix the high-purity powder, dissolve in an appropriate amount of hot concentrated dilute nitric acid to form a nitrate solution; slowly drop the prepared solution together with ammonia water into an ammonia solution with a pH value of about 9.5 to form a precipitate, while stirring continuously, and Detect the pH value of the precipitate solution and make it stable at 8–10; continue to stir for 1 hour after the solution is completely precipitated, then use a centrifuge to separate the precipitate from the solution, then wash the precipitate with deionized water, and repeat multiple times until addition of Al to the separated filtrate 3+ After ionization, no white precipitate is produced; use an oven to dry the precipitate at a temperature of 120°C, and finally place the precipitate at a te...
example 2
[0034] Example 2: The chemical formula is Nd 0.02 Gd 0.98 TaO 4 Application of fluorescent materials
[0035] The chemical formula is Nd when irradiated with laser light with a wavelength of 532nm 0.02 Gd 0.98 TaO 4 Phosphor powder; use a spectrometer to observe the Nd 3+ ion 4 f 3 / 2 Two thermally coupled sublevels of the energy level (R 2 and R 1 )Towards 4 I 9 / 2 The highest energy sub-level of the energy level (Z 5 ) transition, such as figure 1 and figure 2 As shown, two fluorescent peaks are formed, and the intensity ratio of the two fluorescent peaks is calculated; then and image 3 Comparing the given linear graphs, the temperature of the environment where the fluorescent material is located can be obtained.
example 3
[0036] Example 3: The chemical formula is Nd 0.02 Gd 0.98 TaO 4 Application of fluorescent materials
[0037] The chemical formula is Nd when irradiated with laser light with a wavelength of 532nm 0.02 Gd 0.98 TaO 4 Fluorescent material; Utilize the method in the example 2 to determine the ambient temperature initial value T 0 ; Then measure the Nd in the material with a spectrometer 3+ ion 4 f 3 / 2 The lowest energy sublevel of the energy level (R 1 )Towards 4 I 9 / 2 The highest energy sub-level of the energy level (Z 5 ) transition, such as figure 1 and figure 2 The peak energy change △E of the fluorescence peak shown; then use △E to divide by Figure 5 The slope value shown in is 3.32μeV / K, and the temperature change △T can be obtained; in addition, △T+T can be used 0 Get the actual temperature of the environment.
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