Macroscopic assembled, self-standing graphene and graphene oxide (GO) films have been demonstrated as promising materials in many emerging fields, such as Li ion battery electrodes, supercapacitors, heat spreaders, gas separation, and water desalination. Such films were mainly available on centimeter-scale via the time- and energy-consuming vacuum-filtration method, which seriously impedes their progress and large-scale applications. Due to the incompatibility between large-scale and ordered assembly structures, it remains a big challenge to access large-area assembled graphene thick films. Here, we report for the first time a fast wet-spinning assembly strategy to produce continuous GO and graphene thick films. A 20 m long, 5 cm wide, well...
The successful commercialization of smart wearable garments is hindered by the lack of fully integra...
Graphene oxide (GO) sheets can form liquid crystals (LCs) in their aqueous dispersions that are more...
© 2020 Elsevier Inc.We report a new approach to making highly dense, oriented, and crystalline graph...
Macroscopic assembled, self-standing graphene and graphene oxide (GO) films have been demonstrated a...
Graphene fibers have great potential in future wearable electronics due to their promising thermal a...
The recent discovery of liquid crystalline (LC) behavior of graphene oxide (GO) dispersions in vario...
Key points in the formation of liquid crystalline (LC) dispersions of graphene oxide (GO) and their ...
A "cooling-contraction" method to separate large-area (up to 4.2 cm in lateral size) graph...
The development of processing routes, methods and protocols to process graphene oxide and carbon nan...
Graphene fibres have great potential in future wearable electronics due to their promising thermal a...
We report a remarkably rapid method for assembling pristine graphene platelets into a large area tra...
Featured Application Graphene films with both excellent mechanical and electrical properties is cons...
The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electr...
The successful commercialization of smart wearable garments is hindered by the lack of fully integra...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
The successful commercialization of smart wearable garments is hindered by the lack of fully integra...
Graphene oxide (GO) sheets can form liquid crystals (LCs) in their aqueous dispersions that are more...
© 2020 Elsevier Inc.We report a new approach to making highly dense, oriented, and crystalline graph...
Macroscopic assembled, self-standing graphene and graphene oxide (GO) films have been demonstrated a...
Graphene fibers have great potential in future wearable electronics due to their promising thermal a...
The recent discovery of liquid crystalline (LC) behavior of graphene oxide (GO) dispersions in vario...
Key points in the formation of liquid crystalline (LC) dispersions of graphene oxide (GO) and their ...
A "cooling-contraction" method to separate large-area (up to 4.2 cm in lateral size) graph...
The development of processing routes, methods and protocols to process graphene oxide and carbon nan...
Graphene fibres have great potential in future wearable electronics due to their promising thermal a...
We report a remarkably rapid method for assembling pristine graphene platelets into a large area tra...
Featured Application Graphene films with both excellent mechanical and electrical properties is cons...
The conversion of graphene oxide (GO) into reduced graphene oxide (rGO) is imperative for the electr...
The successful commercialization of smart wearable garments is hindered by the lack of fully integra...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
The successful commercialization of smart wearable garments is hindered by the lack of fully integra...
Graphene oxide (GO) sheets can form liquid crystals (LCs) in their aqueous dispersions that are more...
© 2020 Elsevier Inc.We report a new approach to making highly dense, oriented, and crystalline graph...