In this work, we report a dielectric nanocomposite paper with layered boron nitride (BN) nanosheets wired by one-dimensional (1D) nanofibrillated cellulose (NFC) that has superior thermal and mechanical properties. These nanocomposite papers are fabricated from a filtration of BN and NFC suspensions, in which NFC is used as a stabilizer to stabilize BN nanosheets. In these nanocomposite papers, two-dimensional (2D) nanosheets form a thermally conductive network, while 1D NFC provides mechanical strength. A high thermal conductivity has been achieved along the BN paper surface (up to 145.7 W/m K for 50 wt % of BN), which is an order of magnitude higher than that in randomly distributed BN nanosheet composites and is even comparable to the th...
Hexagonal boron nitride (hBN) is a thermally conductive yet electrically insulating two-dimensional ...
Electrically insulating boron nitride (BN) nanosheets possess thermal conductivity similar to and th...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
The development of portable and wearable electronic devices has substantially increased the demand f...
With the rapid development of electronic device, thermal management material is currently in great d...
Owing to the miniaturization of power electronics and the development of portable and flexible devic...
Advanced heat dissipation materials are necessary for powerful and miniaturized electronics. Hexagon...
High-throughput few-layered BN nanosheets have been synthesized through a facile chemical blowing ro...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
As electronic devices become smaller in size, thermal management challenge for various applications ...
Electrically insulating polymeric nanocomposites with high thermal conductivity have great potential...
High-Quality Boron Nitride Nanosheets and Their Bioinspired Thermally Conductive Paper
Hexagonal boron nitride (hBN) is a thermally conductive yet electrically insulating two-dimensional ...
Electrically insulating boron nitride (BN) nanosheets possess thermal conductivity similar to and th...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
The development of portable and wearable electronic devices has substantially increased the demand f...
With the rapid development of electronic device, thermal management material is currently in great d...
Owing to the miniaturization of power electronics and the development of portable and flexible devic...
Advanced heat dissipation materials are necessary for powerful and miniaturized electronics. Hexagon...
High-throughput few-layered BN nanosheets have been synthesized through a facile chemical blowing ro...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...
As electronic devices become smaller in size, thermal management challenge for various applications ...
Electrically insulating polymeric nanocomposites with high thermal conductivity have great potential...
High-Quality Boron Nitride Nanosheets and Their Bioinspired Thermally Conductive Paper
Hexagonal boron nitride (hBN) is a thermally conductive yet electrically insulating two-dimensional ...
Electrically insulating boron nitride (BN) nanosheets possess thermal conductivity similar to and th...
The development of advanced thermal transport materials is a global challenge. Two-dimensional nanom...