A method for synthesizing high melting point polycarbosilane at normal pressure
A technology for synthesizing polycarbosilane under normal pressure, which is applied in the field of synthesizing polycarbosilane with high melting point under normal pressure, which can solve the problems of complex steps, high requirements for solvent dehydration, and difficulty in batch preparation, and achieve simple equipment, easy batch synthesis, and linear The effect of increasing
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Embodiment 1
[0023] This embodiment includes the following steps:
[0024] (1) Under the protection of high-purity nitrogen, the solid raw material polydimethylsilane (PDMS) is cracked and converted into liquid polysilane (LPS) in a nitrogen atmosphere at 360 °C;
[0025] (2) Put 200g of the LPS obtained in step (1) in a pyrolysis synthesis reaction kettle under normal pressure, add 10g of polymethylhydrosilane to the LPS, replace the gas in the kettle with high-purity nitrogen three times; raise the temperature under the protection of high-purity nitrogen React at 220°C for 6 hours, then program temperature increase (at a rate of 0.2°C / min) to 440°C for 8 hours to obtain a crude product;
[0026] (3) Dissolve and filter the crude product obtained in step (2) in xylene (mass ratio of crude product to xylene is 1:1), distill the filtrate at 350°C, and obtain 118.7g of light yellow resinous PCS precursor after cooling body.
[0027] The product PCS obtained in this example has a melting po...
Embodiment 2
[0031] This embodiment includes the following steps:
[0032] (1) with embodiment 1 step (1);
[0033] (2) Put 200g of LPS in an atmospheric pressure pyrolysis synthesis reactor, add 30g of polymethylhydrogensilane to the LPS, replace the gas in the reactor with high-purity nitrogen three times, and raise the temperature to 220°C for 6 hours under the protection of high-purity nitrogen. Then program temperature increase (at a rate of 0.2°C / min) to 430°C for 8 hours to obtain a crude product;
[0034] (3) The crude product was dissolved in xylene (mass ratio of crude product to xylene: 1:1), filtered, and the filtrate was distilled at 350°C. After cooling, 121.1 g of light yellow resinous PCS precursor was obtained.
[0035] The product PCS has a melting point of 255-279°C, a ceramic yield of 62.9wt%, and can be dissolved in organic solvents such as tetrahydrofuran and xylene.
Embodiment 3
[0037] This embodiment includes the following steps:
[0038] (1) with embodiment 1 step (1);
[0039] (2) Put 200g of LPS in the high-temperature pyrolysis synthesis reaction kettle under normal pressure, add 50g of polymethylhydrogensilane to the LPS, replace the gas in the kettle with high-purity nitrogen three times, and raise the temperature to 220°C for 4 hours under the protection of high-purity nitrogen. Then program temperature increase (at a rate of 0.2°C / min) to 420°C for 6 hours to obtain a crude product;
[0040] (3) The crude product was dissolved in xylene (the mass ratio of crude product to xylene was 1:1), filtered, and the filtrate was distilled at 350°C. After cooling, 123.7g of light yellow resinous PCS precursor was obtained.
[0041] The product PCS has a melting point of 259-281°C, a ceramic yield of 63.6wt%, and can be dissolved in organic solvents such as tetrahydrofuran and xylene.
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