Preparation of solid thermoluminescent dosemeter material
A thermoluminescent dose and solid technology, which is applied in the field of preparation of solid thermoluminescent dosimeter materials, can solve the problems of reduced thermoluminescent sensitivity, complex peak shape of thermoluminescent light, unfavorable dose signal testing, etc., and achieve production cost Inexpensive, stable chemical properties of the product, easy to test the effect of the signal
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Embodiment 1
[0014] Raw material is SrHPO 4 (analytical pure), NH 4 h 2 P0 4 (analytical pure), Eu 2 o 3 (99.99%), Pr 6 o 11 (99.99%) The molar ratio between them is 1:0.05:0.02:0.02. Grind the raw materials evenly in a mortar, dry them, put them into a corundum crucible, and then put them into a large corundum crucible, filled with carbon Rods were put into a high-temperature furnace at 900°C for 3 hours, cooled to room temperature naturally, taken out and ground to obtain samples. The obtained product is a white powder, and its thermoluminescence peak is as figure 1 As shown, its luminescence curve is a single peak, and the peak temperature is at 439.5K.
Embodiment 2
[0016] Raw material is SrHPO 4 (analytical pure), NH 4 h 2 PO 4 (analytical pure), Eu 2 o 3 (99.99%), Pr 6 0 11 (99.99%) The molar ratio between them is 1:0.05:0.001:0.08. Grind the raw materials evenly in a mortar, dry them, put them into a corundum crucible, and then put them into a large corundum crucible, filled with carbon Rods were put into a high-temperature furnace for 3 hours at 1000°C and baked for 3 hours, cooled to room temperature naturally, taken out and ground to obtain samples. The obtained product is a white powder, and its thermoluminescence peak is as figure 1 As shown, its luminescence curve is a single peak, and the peak temperature is at 439.5K.
Embodiment 3
[0018] The raw materials are SrHPO4 (analytical pure), NH 4 h 2 PO 4 (analytical pure), Eu 2 o 3 (99.99%), Pr 6 o 11 (99.99%) The molar ratio between them is 1: 0.05: 0.005: 0.001. Grind the raw materials evenly in a mortar, dry them, place them in a corundum crucible, and then put them into a large corundum crucible, filled with carbon Rods were put into a high-temperature furnace at 1200°C for 5 hours, cooled to room temperature naturally, taken out and ground to obtain samples. The obtained product is a white powder, and its thermoluminescence peak is as figure 1 As shown, its luminescence curve is a single peak, and the peak temperature is at 439.5K.
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