Graphene oxide (GO) is well known as a key material to the commercialization of graphene-based applications due to its excellent processability and abundant starting materials. However, producing high quality GO with excellent structural intactness still remains a challenge despite the significant research effort over the past decade. Herein, we demonstrate an effective approach to achieving well-oxidized GO within only 5 h of oxidation time at 5 °C or 25 °C from expanded graphite as a starting material. Our finding reveals that the well-oxidized GO synthesized at 25 °C can regain more graphitic sp networks and thus becomes as conductive as the GO prepared at 5 °C by means of thermal annealing or green chemical reduction. We also found that...
Thermal reduction of graphene oxide (GO) is an essential technique to produce low-cost and higher q...
Thermal reduction of graphene oxide (GO) is an essential technique to produce low-cost and higher q...
Few-layered graphene oxide (GO) was prepared using a fast and energy-saving method by microwave-assi...
Graphene oxide (GO) is well known as a key material to the commercialization of graphene-based appli...
Graphene oxide (GO) is well known as a key material to the commercialization of graphene-based appli...
Graphene oxide (GO) is an attractive alternative to graphene for many applications due to its captiv...
Graphene oxide (GO) is an attractive alternative to graphene for many applications due to its captiv...
Graphene oxide (GO) is an attractive alternative to graphene for many applications due to its captiv...
Graphene has attracted much attention from researchers due to its interesting mechanical, electroche...
Graphene-derived materials are currently studied because of their actual and projected applications....
Graphene oxide with high conductivity is today's demand not only for high quality graphene synthesis...
There has been extensive interest in developing a highly efficient production route toward graphene ...
Graphene is a material with rapidly growing interest. It consists of flat monolayer of carbon atoms ...
Graphene oxide (GO) is widely considered as a graphene precursor when chemically reduced. Neverthele...
Graphene oxide (GO) is widely considered as a graphene precursor when chemically reduced. Neverthele...
Thermal reduction of graphene oxide (GO) is an essential technique to produce low-cost and higher q...
Thermal reduction of graphene oxide (GO) is an essential technique to produce low-cost and higher q...
Few-layered graphene oxide (GO) was prepared using a fast and energy-saving method by microwave-assi...
Graphene oxide (GO) is well known as a key material to the commercialization of graphene-based appli...
Graphene oxide (GO) is well known as a key material to the commercialization of graphene-based appli...
Graphene oxide (GO) is an attractive alternative to graphene for many applications due to its captiv...
Graphene oxide (GO) is an attractive alternative to graphene for many applications due to its captiv...
Graphene oxide (GO) is an attractive alternative to graphene for many applications due to its captiv...
Graphene has attracted much attention from researchers due to its interesting mechanical, electroche...
Graphene-derived materials are currently studied because of their actual and projected applications....
Graphene oxide with high conductivity is today's demand not only for high quality graphene synthesis...
There has been extensive interest in developing a highly efficient production route toward graphene ...
Graphene is a material with rapidly growing interest. It consists of flat monolayer of carbon atoms ...
Graphene oxide (GO) is widely considered as a graphene precursor when chemically reduced. Neverthele...
Graphene oxide (GO) is widely considered as a graphene precursor when chemically reduced. Neverthele...
Thermal reduction of graphene oxide (GO) is an essential technique to produce low-cost and higher q...
Thermal reduction of graphene oxide (GO) is an essential technique to produce low-cost and higher q...
Few-layered graphene oxide (GO) was prepared using a fast and energy-saving method by microwave-assi...