High-temperature high-pressure preparation method of molybdenum boride
A high temperature and high pressure, high temperature and high pressure synthesis technology, applied in the direction of metal borides, boron/borides, etc., can solve the problem of high brittleness of transition metal borides, difficult to measure the hardness of samples, conductivity and other properties, and prepare single-phase borides. Difficulties and other problems, to achieve the effect of simple and easy-to-implement methods
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Embodiment 1
[0022] Mix analytically pure molybdenum powder (Mo) with a particle size of 1 to 5 microns and boron powder (B) with a particle size of 1 to 5 microns at a molar ratio of 2:1. In the assembly chamber, graphite is used as the heating tube, dolomite is used as the insulating tube, and pyrophyllite is used as the pressure transmission medium. The combined pressure is 4.8GPa, the temperature is 1800K, and the pressure holding time is 30 minutes. After the heating is stopped, the sample is naturally cooled to room temperature and then the pressure is released. , the main component prepared under this condition is Mo 2 B, there is still some Mo present. For specific X-ray results, see figure 1 .
Embodiment 2
[0024] Adopt the same raw material powder as in Example 1, mix according to the molar ratio of 1:1, adopt the assembly of Example 1 after the powder is pressed, the synthesis pressure is 4.8GPa, the temperature is 1800K, the holding time of pressure and heat preservation is 1 hour, and the sample after stopping heating After natural cooling to room temperature and pressure release, pure phase MoB was prepared under this condition. For specific X-ray results, see figure 2 .
Embodiment 3
[0026] Adopt the raw material powder identical with embodiment 1, mix by molar ratio 1: 2, after powder pressing molding, adopt the assembly identical with embodiment 1, synthesis pressure is 5.2GPa, temperature 2000K, hold pressure and heat preservation time 15 minutes, stop heating After the sample was naturally cooled to room temperature and then the pressure was released, the pure phase MoB was prepared under this condition 2 . For specific X-ray results, see image 3 .
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