This Research Article reports on the enhancement of the thermal transport properties of nanocomposite materials containing hexagonal boron nitride in poly(vinyl alcohol) through room-temperature atmospheric pressure direct-current microplasma processing. Results show that the microplasma treatment leads to exfoliation of the hexagonal boron nitride in isopropyl alcohol, reducing the number of stacks from amp;gt;30 to a few or single layers. The thermal diffusivity of the resulting nanocomposites reaches 8.5 mm(2) s(-1) times greater than blank poly(vinyl alcohol) and twice that of nanocomposites containing nonplasma treated boron nitride nanosheets. From TEM analysis, we observe much less aggregation Of the nanosheets after plasma processin...
Boron nitride nanosheets (BNNS) have shown great potential in thermal management applications owing ...
Abstract. Two-dimensional (2D) boron nitride (BN) nanosheets, the rising material stars, have\ud uni...
Electrically insulating polymeric nanocomposites with high thermal conductivity have great potential...
This Research Article reports on the enhancement of the thermal transport properties of nanocomposit...
This Research Article reports on the enhancement of the thermal transport properties of nanocomposit...
The rapid development of integrated circuits and electronic devices creates a strong demand for high...
Boron nitride sheets, as the isoelectric analogue of graphene, have gradually attracted researchers’...
The heat accumulation has become a serious problem due to electronic devices towards high power and ...
Advanced heat dissipation materials are necessary for powerful and miniaturized electronics. Hexagon...
Linear low density polyethylene (LLDPE) micro‐textured films filled with boron nitride nanoplatelets...
High heat-dissipation polymers are currently in great demand especially with the rapid development o...
We report here in the fabrication of enhanced thermal conductive pathway nanocomposites of boron nit...
Due to the rapid development of modern micro/nano electronic devices, polymer nanocomposites of high...
Abstract. Two-dimensional (2D) boron nitride (BN) nanosheets, the rising material stars, have unique...
Efficient heat dissipation is a prerequisite for further improving the integration of devices. Howev...
Boron nitride nanosheets (BNNS) have shown great potential in thermal management applications owing ...
Abstract. Two-dimensional (2D) boron nitride (BN) nanosheets, the rising material stars, have\ud uni...
Electrically insulating polymeric nanocomposites with high thermal conductivity have great potential...
This Research Article reports on the enhancement of the thermal transport properties of nanocomposit...
This Research Article reports on the enhancement of the thermal transport properties of nanocomposit...
The rapid development of integrated circuits and electronic devices creates a strong demand for high...
Boron nitride sheets, as the isoelectric analogue of graphene, have gradually attracted researchers’...
The heat accumulation has become a serious problem due to electronic devices towards high power and ...
Advanced heat dissipation materials are necessary for powerful and miniaturized electronics. Hexagon...
Linear low density polyethylene (LLDPE) micro‐textured films filled with boron nitride nanoplatelets...
High heat-dissipation polymers are currently in great demand especially with the rapid development o...
We report here in the fabrication of enhanced thermal conductive pathway nanocomposites of boron nit...
Due to the rapid development of modern micro/nano electronic devices, polymer nanocomposites of high...
Abstract. Two-dimensional (2D) boron nitride (BN) nanosheets, the rising material stars, have unique...
Efficient heat dissipation is a prerequisite for further improving the integration of devices. Howev...
Boron nitride nanosheets (BNNS) have shown great potential in thermal management applications owing ...
Abstract. Two-dimensional (2D) boron nitride (BN) nanosheets, the rising material stars, have\ud uni...
Electrically insulating polymeric nanocomposites with high thermal conductivity have great potential...