Graphene has been demonstrated to be one of the most promising candidates to use as filler to improve the electrical, thermal, chemical and mechanical properties of natural rubber due to exceptional high surface area, superior electrical and thermal conductivity, and remarkable gas impermeability resistance. In this study, graphene nanoplates (GNPs) were mass-produced by a one-step chemical exfoliation of natural graphite and used as a filler for the fabrication of GNPs@natural rubber composite by a simple mixing method. The resultant GNPs/rubber composite was characterized by using scanning electron microscopy (SEM), and a rheometer. The prepared graphene nanoplates had a thickness of less than 10 nm and a lateral size of tens of microns. ...
In this research project, modified graphene was employed as filler to enhance the electrical conduct...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
Motivation for the current paper comes from the expected enhancements in mechanical and viscoelastic...
Graphene has been demonstrated to be one of the most promising candidates to use as filler to improv...
Nowadays developments of most flexible electronic devices have significantly increased due to high d...
Most application-oriented rubber compounds use carbon black (CB) as a reinforcing filler. However, s...
Graphene nanoplatelets (GNPs)/silicone rubber composites were prepared with the assistance of the Fl...
Graphene has exceptionally high surface area, mechanical properties, electrical conductivity, therma...
As the earliest applied elastomer material, natural rubber has undergone development for nearly I 00...
In this work, we evaluated the processing and reinforcement characteristics of both carbon black (CB...
The microstructure and mechanisms of reinforcement have been investigated in nanocomposites consisti...
Reinforcement of filled rubber is governed by the rubber-to-filler interactions at nanoscale. One of...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
In this research project, modified graphene was employed as filler to enhance the electrical conduct...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
Motivation for the current paper comes from the expected enhancements in mechanical and viscoelastic...
Graphene has been demonstrated to be one of the most promising candidates to use as filler to improv...
Nowadays developments of most flexible electronic devices have significantly increased due to high d...
Most application-oriented rubber compounds use carbon black (CB) as a reinforcing filler. However, s...
Graphene nanoplatelets (GNPs)/silicone rubber composites were prepared with the assistance of the Fl...
Graphene has exceptionally high surface area, mechanical properties, electrical conductivity, therma...
As the earliest applied elastomer material, natural rubber has undergone development for nearly I 00...
In this work, we evaluated the processing and reinforcement characteristics of both carbon black (CB...
The microstructure and mechanisms of reinforcement have been investigated in nanocomposites consisti...
Reinforcement of filled rubber is governed by the rubber-to-filler interactions at nanoscale. One of...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
In this research project, modified graphene was employed as filler to enhance the electrical conduct...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
Motivation for the current paper comes from the expected enhancements in mechanical and viscoelastic...