A kind of two-dimensional transition metal boride material, its preparation method and application
A transition metal and boride technology, applied in the field of materials, can solve the problems of the synthesis mechanism of MBenes materials, the lack of systematic research on the influence of surface functional groups on structural stability, etc., and achieve the effect of simple preparation process and easy operation of preparation process.
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[0025] Another aspect of the embodiments of the present invention provides a method for preparing a two-dimensional transition metal boride, comprising: removing the A-site element in the MAB phase material by using a dilute alkaline solution etching reaction to obtain the two-dimensional transition metal boride material .
[0026] In some embodiments, the preparation method includes: etching the MAB phase material in a dilute alkaline solution with a concentration of 0.1mol / L~2mol / L for 0.5h~24h, and stripping the A-site Al element of the MAB phase Two-dimensional transition metal boride materials are obtained.
[0027] Wherein, the preparation method of the MAB phase material includes: uniformly mixing M and / or M-containing material, A and / or A-containing material, B and / or B-containing material according to the molar ratio of the target material, and mixing the obtained The mixture is reacted at a high temperature of 1000-1200° C. for 6-12 hours in an inert atmosphere to o...
Embodiment 1
[0039] Embodiment 1: In this embodiment, the M position is the manganese element Mn 2 B 2 Material.
[0040] The Mn 2 B 2 The materials were prepared as follows:
[0041] (1) Weigh 2.20 g of manganese powder with a particle size of 1 μm, 0.65 g of 200-mesh aluminum powder, 0.43 g of 2-3 μm boron powder, 5.84 g of sodium chloride and 7.45 g of potassium chloride, and grind and mix the above materials to obtain a mixture.
[0042] (2) The mixture is put into a tube furnace for reaction. The reaction conditions are as follows: the reaction temperature is 1050°C, the holding time is 6h, and the inert atmosphere is protected. After the temperature of the sintering system dropped to room temperature, the reaction product in the alumina crucible was taken out.
[0043] (3) Wash the reaction product with deionized water and alcohol: put the reaction product into a beaker, add deionized water, stir and ultrasonically clean for 30 minutes, and then let stand for 1 hour, and then p...
Embodiment 2
[0049] Embodiment 2: In this embodiment, the M position is the manganese element Mn 2 B 2 Material. Adjust the etchant concentration to 1 mol / L.
[0050] The Mn 2 B 2 The materials were prepared as follows:
[0051] (1) Weigh 2.20 g of manganese powder with a particle size of 1 μm, 0.65 g of 200-mesh aluminum powder, 0.43 g of 2-3 μm boron powder, 5.84 g of sodium chloride and 7.45 g of potassium chloride, and grind and mix the above materials to obtain a mixture.
[0052] (2) The mixture is put into a tube furnace for reaction. The reaction conditions are as follows: the reaction temperature is 1050°C, the holding time is 6h, and the inert atmosphere is protected. After the temperature of the sintering system dropped to room temperature, the reaction product in the alumina crucible was taken out.
[0053] (3) Wash the reaction product with deionized water and alcohol: put the reaction product into a beaker, add deionized water, stir and ultrasonically clean for 30 minu...
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