US2007129519A1PendingUtilityA1

Methods of preparing polysilynes

Individually held — no corporate assignee on recordPriority: Mar 22, 2002Filed: Jan 5, 2007Published: Jun 7, 2007
Est. expiryMar 22, 2022(expired)· nominal 20-yr term from priority
C04B 41/87C04B 41/89C04B 41/009C04B 41/5059C08G 77/60C04B 35/571C09D 183/16C04B 41/52
47
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Claims

Abstract

The invention involves new syntheses for poly(methyl- and ethyl-silyne). The invention also includes silicon carbide (SiC) ceramics that can be produced from poly(methylsilyne), as well as other ceramics, which can be produced from these precursors by modified processing conditions.

Claims

exact text as granted — not AI-modified
1 . A method of making a poly(methylsilyne), the method comprising: 
 a) contacting a halogenated methylsilane with a metallic reagent to produce a reaction mixture;    b) homogenizing the reaction mixture to produce a homogenized reaction mixture;    c) adding to the homogenized reaction mixture a solvent to aid in completing the reaction;    d) refluxing the homogenized reaction mixture for at least about 6 hours to produce a first refluxed reaction mixture;    e) contacting the first refluxed reaction mixture with an alkylating agent to produce an end-capped reaction mixture;    f) refluxing the end-capped reaction mixture to produce a second refluxed reaction mixture; and    h) quenching the second refluxed reaction mixture with an aqueous solvent that lacks any alcohol to produce non-pyrophoric poly(methylsilyne).    
   
   
       2 . The method of  claim 1 , wherein the aqueous solvent is water.  
   
   
       3 . The method of  claim 1 , wherein the solvent is tetrahydrofuran.  
   
   
       4 . The method of  claim 1 , wherein the halogenated methylsilane is methyltrichlorosilane.  
   
   
       5 . The method of  claim 1 , wherein the metallic reagent is a sodium potassium alloy.  
   
   
       6 . The method of  claim 1 , wherein the alkylating agent is methylithium.  
   
   
       7 . The method of  claim 1 , wherein the halogenated methyl silane is mixed with a non-polar solvent.  
   
   
       8 . The method of  claim 7 , wherein the non-polar solvent is pentane.  
   
   
       9 . The method of  claim 1 , wherein ultrasound is used to perform the homogenization.  
   
   
       10 . A method of making a poly(ethylsilyne), the method comprising: 
 a) contacting a halogenated ethylsilane with a metallic reagent to produce a reaction mixture;    b) homogenizing the reaction mixture to produce a homogenized reaction mixture;    c) slowly adding to the homogenized reaction mixture a solvent, wherein at least 1.0 ml of the solvent is added drop-wise, to aid in completing the reaction;    d) adding to the homogenized reaction mixture an alkylating agent to produce an end-capped reaction mixture; and    e) quenching the end-capped reaction mixture with an aqueous solvent that lacks any alcohol to produce non-pyrophoric poly(ethylsilyne).    
   
   
       11 . The method of  claim 10 , wherein the aqueous solvent is water.  
   
   
       12 . The method of  claim 10 , wherein the solvent is tetrahydrofuran.  
   
   
       13 . The method of  claim 1 , wherein the halogenated ethylsilane is ethyltrichlorosilane.  
   
   
       14 . The method of  claim 1 , wherein the metallic reagent is a sodium potassium alloy.  
   
   
       15 . The method of  claim 1 , wherein the alkylating agent is methylithium.  
   
   
       16 . The method of  claim 1 , wherein the halogenated ethylsilane is mixed with a non-polar solvent.  
   
   
       17 . The method of  claim 16 , wherein the non-polar solvent is pentane.  
   
   
       18 . The method of  claim 1 , wherein ultrasound is used to perform the homogenization.  
   
   
       19 . The method of  claim 10 , further comprising refluxing the homogenized reaction mixture.  
   
   
       20 . The method of  claim 10 , further comprising refluxing the end-capped reaction mixture.  
   
   
       21 . A method of making a ceramic, the method comprising 
 forming poly(methylsilyne) by the method of  claim 1;  and    heating the poly(methylsilyne) to a temperature of at least 200° C. to form the ceramic.    
   
   
       22 . The method of  claim 21 , wherein the poly(methylsilyne) is heated to at least 1000° C.  
   
   
       23 . The method of  claim 21 , wherein the ceramic is within 5% of stoichiometric.  
   
   
       24 . The method of  claim 21 , wherein the poly(methylsilyne) is heated by exposure to a plasma.  
   
   
       25 . The method of  claim 21 , wherein the poly(methylsilyne) is heated by exposure to a laser.  
   
   
       26 . The method of  claim 21 , wherein the ceramic is silicon carbide.  
   
   
       27 . The method of  claim 21 , wherein the ceramic has a mean square roughness of less than 200 Å, scanned over 5 microns.  
   
   
       28 . A method of making a ceramic, the method comprising 
 forming poly(ethylsilyne) by the method of  claim 1;  and    heating the poly(ethylsilyne) to a temperature of at least 200° C. to form the ceramic.    
   
   
       29 . The method of  claim 28 , wherein the poly(ethylsilyne) is heated to at least 1000° C.  
   
   
       30 . A method of forming a film of poly(methylsilyne), the method comprising 
 forming poly(methylsilyne) by the method of  claim 1;     solubilizing the poly(methylsilyne) in a solvent; and    coating the solubilized poly(methylsilyne) onto a substrate to form a film.    
   
   
       31 . The method of  claim 30 , wherein the solvent is tetrahydrofuran.  
   
   
       32 . A method of forming a film of poly(ethylsilyne), the method comprising 
 forming poly(ethylsilyne) by the method of  claim 10;     solubilizing the poly(ethylsilyne) in a solvent; and    coating the solubilized poly(ethylsilyne) onto a substrate to form a film.    
   
   
       33 . The method of  claim 32 , wherein the solvent is tetrahydrofuran.

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