Preparation method of silicon carbide nanometer line accompanied with string structure
A silicon carbide nanowire and sintering furnace technology, which is applied in the field of preparation of quasi-one-dimensional nanostructures, can solve the problems of difficult control of product structure and shape, complicated preparation process, and high cost, and achieve short preparation cycle, simple preparation process, low cost effect
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specific Embodiment approach 1
[0008] Specific Embodiment 1: The silicon carbide nanowires with a string structure in this embodiment are prepared through the following steps: 1. Prepare a mixed sol of silica sol and sucrose according to the molar ratio of silicon to carbon of 1:2-5, 2. Use a magnetic stirrer to stir for 2 to 4 hours at a room temperature of 15-30°C to prepare a uniform sol; 3. Put the beaker containing the sol into a water bath heater and control the temperature at 90-100°C Carry out gel treatment for 5±0.1 hours to obtain a white or slightly light yellow transparent gel; 4. Put the gel obtained in step 3 into a crucible and place it in a tubular heating furnace at a rate of 950-1100ml / min The flow rate of nitrogen gas is passed into the tube heating furnace, and the tube heating furnace is heated to 750 ~ 850 ° C at a heating rate of 8 ~ 12 ° C / min, and the temperature is maintained for 1 hour, and then naturally cooled to room temperature under the protection of nitrogen gas, to obtain ...
specific Embodiment approach 2
[0010] Embodiment 2: The difference between this embodiment and Embodiment 2 is that in step 1, a mixed sol of silica sol and sucrose is prepared according to the molar ratio of silicon to carbon of 1:3. Other steps are the same as in the first embodiment.
specific Embodiment approach 3
[0011] Embodiment 3: The difference between this embodiment and Embodiment 2 is that in Step 2, a magnetic stirrer was used to stir for 4 hours at a room temperature of 20°C. The mixed sol obtained after magnetic stirring for 4 hours at a temperature of 20° C. was homogeneous and transparent. Other steps are the same as in the first embodiment.
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