Improvement on the electrical property of conductive polymer composites is dependent on the controllable dispersion of conductive additives in polymer matrices to form a conductive network. Here we show a segregated electrically conductive network is assembled in poly(l-lactide)/poly(ε-caprolactone)/multiwall carbon nanotubes (PLLA/PCL/MWCNTs) composites. First, the MWCNTs were dispersed in PCL to obtain the PCL/MWCNTs phase. Second, the PLLA particles were well coated with PCL/MWCNTs phase at 100 °C, which is between melting temperature of PLLA and PCL. Finally, the coated PLLA particles were compressed above the melting temperature of PLLA to form PCL/MWCNTs segregated structures. The morphological observation showed MWCNTs successful l...
We present novel routes to tune the phase-separated morphology and the percolated network of multiwa...
Evolution of DC conductivity with double-walled carbon nanotube concentration in a polyamide 11 matr...
Self-assembled percolated networks play an important role in many advanced electronic materials and ...
The concept of "double percolation", i.e., conductive fillers are selectively located in one phase o...
International audienceElectrical conductivity ó and dielectric characteristics å', tanä were investi...
Morphological control of conductive networks involves the construction of segregated or double-perco...
The concentration of conducting fillers for rendering a continuous conductive pathway is referred to...
Carbon nanotube reinforced polymeric composites can have favourable electrical properties, which mak...
In this project, the phenomenon of ultra-low percolation threshold for electrical conduction in carb...
International audienceConductive fillers such as graphene are able to increase the electrical conduc...
We describe an approach to engineer bi-continuous conductive blends of polymers and multiwall carbon...
We review experimental and theoretical work on electrical percolation of carbon nanotubes (CNT) in p...
Carbon nanotubes (CNT) based polymer composites have emerged as the future multifunctional materials...
The latex-based technique to introduce carbon nanotubes (CNTs) into polymers has shown to be highly ...
Electrical and thermal properties of carbon-nanotube (CNT) /polymer composites were investigated thr...
We present novel routes to tune the phase-separated morphology and the percolated network of multiwa...
Evolution of DC conductivity with double-walled carbon nanotube concentration in a polyamide 11 matr...
Self-assembled percolated networks play an important role in many advanced electronic materials and ...
The concept of "double percolation", i.e., conductive fillers are selectively located in one phase o...
International audienceElectrical conductivity ó and dielectric characteristics å', tanä were investi...
Morphological control of conductive networks involves the construction of segregated or double-perco...
The concentration of conducting fillers for rendering a continuous conductive pathway is referred to...
Carbon nanotube reinforced polymeric composites can have favourable electrical properties, which mak...
In this project, the phenomenon of ultra-low percolation threshold for electrical conduction in carb...
International audienceConductive fillers such as graphene are able to increase the electrical conduc...
We describe an approach to engineer bi-continuous conductive blends of polymers and multiwall carbon...
We review experimental and theoretical work on electrical percolation of carbon nanotubes (CNT) in p...
Carbon nanotubes (CNT) based polymer composites have emerged as the future multifunctional materials...
The latex-based technique to introduce carbon nanotubes (CNTs) into polymers has shown to be highly ...
Electrical and thermal properties of carbon-nanotube (CNT) /polymer composites were investigated thr...
We present novel routes to tune the phase-separated morphology and the percolated network of multiwa...
Evolution of DC conductivity with double-walled carbon nanotube concentration in a polyamide 11 matr...
Self-assembled percolated networks play an important role in many advanced electronic materials and ...