Herein, investigation on synergistic effect during network formation for conductive network constructed with carbon nanofillers in different dimensions is conducted. Multi-walled carbon nanotubes (MWNTs) and carbon black (CB) are employed as conductive fillers in this system. Morphological control of the conductive network is realized by adjusting the ratio between different fillers. Classical percolation threshold theory and adjusted excluded volume theory are used to analyze the electrical percolating behavior of these systems. It is observed that the percolation threshold of hybrid fillers filled conductive polymer composites (CPCs) is much lower than that of MWNTs or CB filled CPCs, and it can be reduced from 2.4 to 0.21 wt% by replacin...
Ce travail de thèse propose, par une approche multi-échelles, une compréhension de certains mécanism...
Over two decades after carbon nanotubes started to attract interest for their seemingly huge prospec...
We describe an approach to engineer bi-continuous conductive blends of polymers and multiwall carbon...
Herein, investigation on synergistic effect during network formation for conductive network construc...
The main objective of this thesis was to reduce the percolation threshold of conductive polymer comp...
The latex-based technique to introduce carbon nanotubes (CNTs) into polymers has shown to be highly ...
Morphological control of conductive networks involves the construction of segregated or double-perco...
The electrical percolation of polymer-matrix composites (PMCs) containing hybrid fillers of carbon n...
The thesis research field determines the main parameters, of the conductive phase structure formatio...
Carbon nanotube reinforced polymeric composites can have favourable electrical properties, which mak...
We show that a generalized connectedness percolation theory can be made tractable for a large class ...
Mesoscale networks of multiwalled carbon nanotubes (CNTs) dispersed in 50/50 PS/PPO (polystyrene/pol...
Electrically conductive composite materials can be used for a wide range of applications because the...
According to previous research, nanostructured carbon composites are positioned among others as prom...
The concept of "double percolation", i.e., conductive fillers are selectively located in one phase o...
Ce travail de thèse propose, par une approche multi-échelles, une compréhension de certains mécanism...
Over two decades after carbon nanotubes started to attract interest for their seemingly huge prospec...
We describe an approach to engineer bi-continuous conductive blends of polymers and multiwall carbon...
Herein, investigation on synergistic effect during network formation for conductive network construc...
The main objective of this thesis was to reduce the percolation threshold of conductive polymer comp...
The latex-based technique to introduce carbon nanotubes (CNTs) into polymers has shown to be highly ...
Morphological control of conductive networks involves the construction of segregated or double-perco...
The electrical percolation of polymer-matrix composites (PMCs) containing hybrid fillers of carbon n...
The thesis research field determines the main parameters, of the conductive phase structure formatio...
Carbon nanotube reinforced polymeric composites can have favourable electrical properties, which mak...
We show that a generalized connectedness percolation theory can be made tractable for a large class ...
Mesoscale networks of multiwalled carbon nanotubes (CNTs) dispersed in 50/50 PS/PPO (polystyrene/pol...
Electrically conductive composite materials can be used for a wide range of applications because the...
According to previous research, nanostructured carbon composites are positioned among others as prom...
The concept of "double percolation", i.e., conductive fillers are selectively located in one phase o...
Ce travail de thèse propose, par une approche multi-échelles, une compréhension de certains mécanism...
Over two decades after carbon nanotubes started to attract interest for their seemingly huge prospec...
We describe an approach to engineer bi-continuous conductive blends of polymers and multiwall carbon...