New method for preparing ternary molybdenum nitride nano material
A nanomaterial and nitride technology, applied in the field of nanomaterials, can solve the problems of low purity of ternary molybdenum nitrides, and achieve the effects of simple and easy-to-control reaction process, wide source of raw materials and low reaction temperature.
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Embodiment 1
[0036]Add 5mmol of metallic molybdenum powder, 10mmol of ferric oxide and 80mmol of sodium azide to a 20ml stainless steel autoclave, seal it and put it into an electric furnace capable of temperature programming, and the furnace temperature rises from room temperature to 80 minutes. 800°C, then maintained at 800°C for 5 hours and then naturally cooled to room temperature. The final product in the autoclave included black deposits and residual gas. Collect the black deposits that stick to the inner surface of the kettle wall, wash them with distilled water and absolute ethanol for many times, and filter the obtained samples. The samples were dried in a vacuum drying oven at 50 °C for 4 hours, and finally collected for characterization. .
[0037] The phase analysis of the powder was carried out using a Japanese Rigaku D / max-γA X-ray powder diffraction (XRD) instrument. Graphite monochromator, the tube voltage and current are 40kV and 20mA, respectively, and the scanning spe...
Embodiment 2
[0039] 5mmol metal molybdenum powder, 10mmol cobalt chloride and 80mmol sodium azide were added to a 20ml stainless steel autoclave, sealed and put into an electric furnace capable of temperature programming, and the furnace temperature was raised from room temperature to 800 ℃ within 80 minutes. °C, and then maintained at 800 °C for 5 hours and then naturally cooled to room temperature. The final product in the autoclave included black deposits and residual gas. Collect the black deposits that stick to the inner surface of the kettle wall, wash them with distilled water and absolute ethanol for many times, and filter the obtained samples. The samples were dried in a vacuum drying oven at 50 °C for 4 hours, and finally collected for characterization. .
[0040] Figure 5 The X-ray diffraction pattern of the product prepared in Example 2. Depend on Figure 5 It can be seen that in the X-ray diffraction spectrum, 2θ has all diffraction peaks at 10-80°, in which the diffracti...
Embodiment 3
[0042] 5mmol metal molybdenum powder, 10mmol nickel chloride and 80mmol sodium azide were added to a 20ml stainless steel autoclave, sealed and put into an electric furnace capable of temperature programming, and the furnace temperature was raised from room temperature to 800 ℃ within 80 minutes. °C, and then maintained at 800 °C for 5 hours and then naturally cooled to room temperature. The final product in the autoclave included black deposits and residual gas. Collect the black deposits that stick to the inner surface of the kettle wall, wash them with distilled water and absolute ethanol for many times, and filter the obtained samples. The samples were dried in a vacuum drying oven at 50 °C for 4 hours, and finally collected for characterization. .
[0043] Figure 10 For the X-ray diffraction pattern of the product prepared in Example 3, all diffraction peaks in the figure can be designated as cubic phase ternary nitrides No other impurity peaks appeared. The morphol...
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