Claims
        
                - 1. A semi-conducting composition having a grain size less than 10 microns comprising:
 
                - about 55.0-99.98% by weight of a polycrystalline alkaline earth metal titanate;
 
                - about 0.01-10% by weight of a hexavalent metal oxide having the formula (MO.sub.3)(Bi.sub.2 O.sub.3).sub.x, where M is tungsten or molybdenum and x is 0-7, said oxide being incorporated in said titanate to provide semiconductivity thereto; and
 
                - about 0.01-35% by weight of a lead germanate composition having the formula (PbO).sub.x (GeO.sub.2).sub.y-z (SiO.sub.2).sub.z where x is 1-6, y is 1-3, and z is 0-0.75y,
 
                - said lead germanate composition forming an insulating boundary layer about the grains of said semiconducting titanate.
 
                - 2. The composition of claim 1 wherein said alkaline earth metal titanate is strontium titanate.
 
                - 3. The composition of claim 2 wherein said lead germanate composition is Pb.sub.5 Ge.sub.3 O.sub.11.
 
                - 4. The composition of claim 3 wherein said metal oxide is WO.sub.3.
 
                - 5. The composition of claim 3 wherein said metal oxide is Bi.sub.2 WO.sub.6.
 
                - 6. A semi-conducting ceramic composition having a grain size less than 10 microns produced by the steps of:
 
                - (a) calcining at a temperature of about 1000.degree.-1400.degree. C. about 90-99.99% by weight of a fine particle size polycrystalline alkaline earth metal titanate with about 0.01 to 10% by weight of a hexavalent metal oxide having the formula (MO.sub.3)(Bi.sub.2 O.sub.3).sub.x, where M is tungsten or molybdenum and x is 0.0-7, whereby said titanate is rendered semiconducting;
 
                - (b) mixing the product of step (a) with about 0.01-35% by weight of a lead germanate composition having the formula (PbO).sub.x (GeO.sub.2).sub.y-z (SiO.sub.2).sub.z, where x is 1-6, y is 1-3, and z is 0.0-0.75y; and
 
                - (c) firing the mixture of step (b) at a temperature of about 850.degree.-1300.degree. C. to provide by liquid-phase sintering an insulating boundary layer of said lead germanate composition about the grains of said semiconducting alkaline earth metal titanate.
 
                - 7. The composition of claim 6 wherein said alkaline earth metal titanate is strontium titanate.
 
                - 8. The composition of claim 7 wherein said lead germanate composition is Pb.sub.5 Ge.sub.3 O.sub.11.
 
                - 9. The composition of claim 8 wherein said metal oxide is WO.sub.3.
 
                - 10. The composition of claim 8 wherein said metal oxide is Bi.sub.2 WO.sub.6.
 
        
                
                        Parent Case Info
        This application is a continuation-in-part of our copending application Ser. No. 023,708, filed Mar. 26, 1979, now U.S. Pat. No. 4,237,084.
                
                
                
                            US Referenced Citations (5)
            
                
                    
                        | Number | 
                        Name | 
                        Date | 
                        Kind | 
                    
                
                
                        
                            | 
3933668                             | 
                            Takahashi et al. | 
                            Jan 1976 | 
                             | 
                        
                        
                            | 
4096098                             | 
                            Umeya et al. | 
                            Jun 1978 | 
                             | 
                        
                        
                            | 
4143207                             | 
                            Itakura et al. | 
                            Mar 1979 | 
                             | 
                        
                        
                            | 
4158219                             | 
                            Payne et al. | 
                            Jun 1979 | 
                             | 
                        
                        
                            | 
4237084                             | 
                            Payne et al. | 
                            Dec 1980 | 
                             | 
                        
                
            
                        Continuation in Parts (1)
        
            
                
                     | 
                    Number | 
                    Date | 
                    Country | 
                
            
            
    
        | Parent | 
            23708 | 
        Mar 1979 | 
         |