In this work we report on the processing, melt-drawing, and performance of new vanillic acid based aliphatic-aromatic thermotropic polyesters. It is demonstrated that these materials are easily processed from their nematic melts yielding highly oriented products. Furthermore, we demonstrate that a molecular weight (Mw) of roughly 30 kg/mol is required in order to successfully perform spinning on these polymers. The application of a polymer with lower Mw results in poor mechanical performance and fiber breakage during the winding process. Wide-angle X-ray diffraction analysis has been performed on the fibers and it is demonstrated that the orientation parameter increases with increasing draw-ratio of the fiber. Although these polymers are re...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
Thermotropic polyesters are an important class of materials for high performance applications.Their ...
Thermotropic polyesters are an important class of materials for high performance applications.Their ...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
In this work we report on the processing, melt-drawing, and performance of new vanillic acid based a...
Thermotropic polyesters are an important class of materials for high performance applications.Their ...
Thermotropic polyesters are an important class of materials for high performance applications.Their ...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...
In this work, we address the synthesis of novel aromatic–aliphatic biobased polyesters showing therm...