Rare-earth-doped glass of with near-infrared dual waveband ultra wide band emission and preparation method of rare-earth-doped glass
A rare earth-doped, dual-band technology, applied in glass manufacturing equipment, glass furnace equipment, glass molding, etc., can solve the problems that restrict the application range of rare earth doped glass and crystal materials, and achieve excellent physical and chemical properties, flat spectrum The effect of less equipment
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Embodiment 1
[0038] A near-infrared dual-band ultra-broadband emission rare-earth-doped glass proposed in this embodiment, its matrix is tellurite glass, which includes the following components in molar percentages:
[0039]
[0040] In this particular example, the component TeO 2 , ZnO, WO 3 、 Bi 2 o 3 、Pr 6 o 11 、Nd 2 o 3 and Er 2 o 3 The mass percent purity is 99.99%.
[0041] The preparation method of the rare earth-doped glass of the near-infrared dual-band ultra-broadband emission of the present embodiment comprises the following steps:
[0042] Step 1: Select the raw material formula according to the following mole percentage components, then calculate the weight percentage of each powdery raw material according to the total amount of rare earth-doped glass to be prepared, and weigh each powdery raw material;
[0043]
[0044] Step 2: Mix all the weighed powdered raw materials evenly and pour them into the corundum crucible; then move the corundum crucible containi...
Embodiment 2
[0053] A near-infrared dual-band ultra-broadband emission rare-earth-doped glass proposed in this embodiment, its matrix is tellurite glass, which includes the following components in molar percentages:
[0054]
[0055] In this particular example, the component TeO 2 , ZnO, WO 3 、 Bi 2 o 3 、Pr 6 o 11 、Nd 2 o 3 and Er 2 o 3 The mass percent purity is 99.99%.
[0056] The preparation method of the rare earth-doped glass of the near-infrared dual-band ultra-broadband emission of the present embodiment comprises the following steps:
[0057] Step 1: Select the raw material formula according to the following mole percentage components, then calculate the weight percentage of each powdery raw material according to the total amount of rare earth-doped glass to be prepared, and weigh each powdery raw material;
[0058]
[0059] Step 2: Mix all the weighed powdered raw materials evenly and pour them into the corundum crucible; then move the corundum crucible containi...
Embodiment 3
[0068] A near-infrared dual-band ultra-broadband emission rare-earth-doped glass proposed in this embodiment, its matrix is tellurite glass, which includes the following components in molar percentages:
[0069]
[0070]
[0071] In this particular example, the component TeO 2 , ZnO, WO 3 、 Bi 2 o 3 、Pr 6 o 11 、Nd 2 o 3 and Er 2 o 3 The mass percent purity is 99.99%.
[0072] The preparation method of the rare earth-doped glass of the near-infrared dual-band ultra-broadband emission of the present embodiment comprises the following steps:
[0073] Step 1: Select the raw material formula according to the following mole percentage components, then calculate the weight percentage of each powdery raw material according to the total amount of rare earth-doped glass to be prepared, and weigh each powdery raw material;
[0074]
[0075] Step 2: Mix all the weighed powdered raw materials evenly and pour them into the corundum crucible; then move the corundum cruci...
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