As the portable device hardware has been increasing at a noticeable rate, ultrathin thermal conducting materials (TCMs) with the combination of high thermal conductivity and excellent electromagnetic interface (EMI) shielding performance, which are used to efficiently dissipate heat and minimize EMI problems generated from electronic components (such as high speed processors), are urgently needed. In this work, graphene oxide (GO) films are fabricated by direct evaporation of GO suspension under mild heating, and ultrathin graphite-like graphene films are produced by graphitizing GO films. Further investigation demonstrates that the resulting graphene film with only approximate to 8.4 mu m in thickness not only possesses excellent EMI shiel...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
We report pristine graphene (pG) as an effective shielding material for electromagnetic interference...
Shielding devices from thermally reduced graphene oxide have been fabricated for superior electromag...
Lightweight, flexible graphite foils that are chemically inert, high-temperature resistant, and high...
© 2020 Elsevier Inc.We report a new approach to making highly dense, oriented, and crystalline graph...
Graphene films promise great application potential in modern electronic devices due to their superio...
Abstract Graphene provides thermal and electrical conductivity to polymer composites, which signific...
Efficient heat dissipation is becoming an urgent demand in electronics and optoelectronics because o...
Electronic components are becoming miniaturized and complicated, leading to increased levels of heat...
The electromagnetic pollution issues have been arising from the fast-growing development for electro...
With rapid progresses on the advanced electronic science and technology, electromagnetic irradiation...
A simple and cost-effective method for synthesizing high quality thermally reduced graphene oxide (T...
Miniaturization and integration of electronic components lead to increasing challenges of thermal ma...
Graphitic oxide (GO) was synthesized by oxidation of graphite powder using Hummer’s method and the f...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
We report pristine graphene (pG) as an effective shielding material for electromagnetic interference...
Shielding devices from thermally reduced graphene oxide have been fabricated for superior electromag...
Lightweight, flexible graphite foils that are chemically inert, high-temperature resistant, and high...
© 2020 Elsevier Inc.We report a new approach to making highly dense, oriented, and crystalline graph...
Graphene films promise great application potential in modern electronic devices due to their superio...
Abstract Graphene provides thermal and electrical conductivity to polymer composites, which signific...
Efficient heat dissipation is becoming an urgent demand in electronics and optoelectronics because o...
Electronic components are becoming miniaturized and complicated, leading to increased levels of heat...
The electromagnetic pollution issues have been arising from the fast-growing development for electro...
With rapid progresses on the advanced electronic science and technology, electromagnetic irradiation...
A simple and cost-effective method for synthesizing high quality thermally reduced graphene oxide (T...
Miniaturization and integration of electronic components lead to increasing challenges of thermal ma...
Graphitic oxide (GO) was synthesized by oxidation of graphite powder using Hummer’s method and the f...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
We report pristine graphene (pG) as an effective shielding material for electromagnetic interference...