Novel molecular weight controlled and endcapped polybenzimidazoles (PBI) are prepared by the aromatic nucleophilic displacement reaction of di(hydroxyphenylbenzimidazole) monomers with activated aromatic dihalides or activated aromatic dinitro compounds. The PBI are endcapped with mono(hydroxyphenyl)benzimidazoles. The polymerizations are carried out in polar aprotic solvents such as N-methyl-2-pyrrolidinone or N,N-dimethylacetamide using alkali metal bases such as potassium carbonate at elevated temperatures under nitrogen. Mono(hydroxyphenyl)benzimidazoles are synthesized by reacting phenyl-4-hydroxybenzoate with aromatic (o-diamine)s in diphenylsulfone. Molecular weight controlled and endcapped PBI of new chemical structures are prepared...
The process of the present invention includes first treating a polyamide acid (such as LARC-TPI poly...
Metamaterials or artificial negative index materials (NIMs) have generated great attention due to th...
The overall goal of the work presented within this thesis is to investigate, understand, and develop...
Novel poly(N-arylenebenzimidazole)s (PNABIs) are prepared by the aromatic nucleophilic displacement ...
Di(hydroxyphenyl)benzimidazole monomers were prepared from phenyl-4-hydroxybenzoate and aromatic bis...
Poly(1,3,4-oxadiazoles) (POX) are prepared by the aromatic nucleophilic displacement reaction of di(...
Graduation date: 1993Polybenzimidazoles were synthesized from 3,3'-diaminobenzidine (DAB) and dicarb...
The present invention relates generally to polyimides. It relates particularly to novel polyimides p...
Polymer chemistry and thermal stability of benzimidazole aromatic imide copolymer
As part of a continuing effort to prepare high performance-high temperature polymers for functional ...
In the title compound, C14H9F3N 2, the mean planes of the benzimidazole ring system and the trifluor...
Synthesis, moldability and chloroform, acetone and tricresyl phosphate resistance of 16 polymer comp...
Reactions involving the nucleophilic addition cyclization to activated acetylenes have been employed...
Foamed cross-linked poly-N-arylenebinzimidazoles are prepared by mixing an organic tetraamine and an...
Polyimides were prepared from the reaction of aromatic dianhydrides with novel aromatic diamines hav...
The process of the present invention includes first treating a polyamide acid (such as LARC-TPI poly...
Metamaterials or artificial negative index materials (NIMs) have generated great attention due to th...
The overall goal of the work presented within this thesis is to investigate, understand, and develop...
Novel poly(N-arylenebenzimidazole)s (PNABIs) are prepared by the aromatic nucleophilic displacement ...
Di(hydroxyphenyl)benzimidazole monomers were prepared from phenyl-4-hydroxybenzoate and aromatic bis...
Poly(1,3,4-oxadiazoles) (POX) are prepared by the aromatic nucleophilic displacement reaction of di(...
Graduation date: 1993Polybenzimidazoles were synthesized from 3,3'-diaminobenzidine (DAB) and dicarb...
The present invention relates generally to polyimides. It relates particularly to novel polyimides p...
Polymer chemistry and thermal stability of benzimidazole aromatic imide copolymer
As part of a continuing effort to prepare high performance-high temperature polymers for functional ...
In the title compound, C14H9F3N 2, the mean planes of the benzimidazole ring system and the trifluor...
Synthesis, moldability and chloroform, acetone and tricresyl phosphate resistance of 16 polymer comp...
Reactions involving the nucleophilic addition cyclization to activated acetylenes have been employed...
Foamed cross-linked poly-N-arylenebinzimidazoles are prepared by mixing an organic tetraamine and an...
Polyimides were prepared from the reaction of aromatic dianhydrides with novel aromatic diamines hav...
The process of the present invention includes first treating a polyamide acid (such as LARC-TPI poly...
Metamaterials or artificial negative index materials (NIMs) have generated great attention due to th...
The overall goal of the work presented within this thesis is to investigate, understand, and develop...