K3Sc3(PO4)(PO3F)2F5 compound, nonlinear optical crystal, and preparation method and application of nonlinear optical crystal
A nonlinear optics and compound technology, applied in the field of K3Sc32F5 compounds, can solve the problems of inability to achieve 1064nm wavelength laser quadruple frequency output, limited output power and beam quality, difficult to achieve commercial applications, etc., to achieve easy processing and storage, short UV absorption cut-off edge, effect of large nonlinear optical effects
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Embodiment 1
[0032] Adopt hydrothermal reaction method, reaction equation is as follows:
[0033] (a)3KF+3Sc(NO 3 ) 3 ·xH 2 O+3H 3 PO 4 +4NH 4 F=K 3 sc 3 (PO 4 )(PO 3 f) 2 f 5 ↓+4NH 3 ↑+H 2 O↑+NO 2 ↑
[0034] The dosage of the above three reagents: KF 0.14 gram (2.5mmol), Sc(NO 3 ) 2 ·xH 2 O 0.338 grams (1.5mmol), H 3 PO 4 0.3 mL (4.5 mmol), NH 4 F 0.12 g (3 mmol).
[0035] The specific operation steps are: Weigh the reagents according to the above doses, put them into a polytetrafluoroethylene liner with a volume of 23mL, and add 2mL TEA, 6mL H 2 O, then put it into the reactor and place it in the oven, and raise the temperature to 200°C at a rate of 10°C / hour. The temperature was kept constant for 5 days, and then slowly lowered to room temperature at a rate of 1°C / h. After the reaction is over, the reaction product is taken out and filtered with filter paper to separate the colorless transparent block crystals to obtain K 3 sc 3 (PO 4 )(PO 3 f) 2 f 5 .
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Embodiment 2
[0038] Adopt hydrothermal reaction method, reaction equation is as follows:
[0039] (b)3KF+3Sc(NO 3 ) 3 ·xH 2 O+3H 3 PO 4 +4NH 4 F=K 3 sc 3 (PO 4 )(PO 3 f) 2 f 5 ↓+4NH 3 ↑+H 2 O↑+NO 2 ↑
[0040] The dosage of the above three reagents: KF 0.425 gram (7mmol), Sc(NO 3 ) 3 ·xH 2 O 0.724 grams (3mmol), H 3 PO 4 0.5mL (7mmol), NH 4 F 0.12 g (3 mmol).
[0041] The specific operation steps are: weigh the reagents according to the above dosage, put them into a polytetrafluoroethylene liner with a volume of 23mL, and add 1mL H 2 0. 6mL TEA, then put it into a reaction kettle and place it in an oven, and raise the temperature to 200°C at a rate of 10°C / hour. Keep the temperature constant for 3-5 days, then slowly drop to room temperature at a rate of 1°C / h. After the reaction is over, the reaction product is taken out and filtered with filter paper to separate the colorless transparent block crystals to obtain KMgSO 4 F.
[0042] Such as figure 2 As shown, the...
Embodiment 3
[0044] Adopt hydrothermal reaction method, reaction equation is as follows:
[0045] (c)3KF+3Sc(NO 3 ) 3 ·xH 2 O+3H 3 PO 4 +4NH 4 F=K 3 sc 3 (PO 4 )(PO 3 f) 2 f 5 ↓+4NH 3 ↑+H 2 O↑+NO 2 ↑
[0046] The dosage of the above three reagents: KF 0.991 gram (17mmol), Sc(NO 3 ) 3 ·xH 2 O 0.563 grams (2.5mmol), H 3 PO 4 0.5mL (7mmol), NH 4 F 0.12 g (3 mmol).
[0047] The specific operation steps are: weigh the reagents according to the above doses, put them into a polytetrafluoroethylene liner with a volume of 23mL and add 6mLH 2 O, 2mL TEA, then put it into the reaction kettle and place it in the oven, and raise the temperature to 200°C at a rate of 10°C / hour. The temperature was kept constant for 5 days, and then slowly lowered to room temperature at a rate of 1°C / h. After the reaction is over, the reaction product is taken out and filtered with filter paper to separate the colorless transparent block crystals to obtain K 3 sc 3 (PO 4)(PO 3 f) 2 f 5 .
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