Achieving a sustainable production of pristine high-quality graphene and other layered materials at a low cost is one of the bottlenecks that needs to be overcome for reaching 2D material applications at a large scale. Liquid phase exfoliation in conjunction with N-methyl-2-pyrrolidone (NMP) is recognized as the most efficient method for both the exfoliation and dispersion of graphene. Unfortunately, NMP is neither sustainable nor suitable for up-scaling production due to its adverse impact on the environment. Here, we show the real potential of green solvents by revealing the independent contributions of their exfoliation efficiency and graphene dispersibility to the graphene yield. By experimentally separating these two factors, we demons...
The successful exfoliation of graphite to graphene sheets in liquid phase via tip sonication was ach...
322-333Graphene is the most widely investigated carbon nanomaterial having two-dimensional honeycomb...
Nanomaterials have many advanced applications, from bio-medicine to flexible electronics to energy s...
Achieving sustainable production of pristine high-quality graphene and other layered materials at lo...
Achieving a sustainable production of pristine high-quality graphene and other layered materials at ...
Due to its unprecedented physical properties, graphene has generated huge interest over the last 7 y...
The main purpose of this work is to experimentally investigate the concentration yields of exfoliat...
The direct exfoliation of graphite to form graphene was investigated in a ternary solvent system con...
Organic solvent is suitable for the exfoliation of graphene. However, for the end application of exf...
The scalable production and dispersion of 2D materials, like graphene, is critical to enable their u...
Four organic amine-based solvents were discovered which enable direct exfoliation of graphite to pro...
none12siAchieving the full control over the production as well as processability of high-quality gra...
Nanomaterials have many advanced applications, from bio-medicine to flexible electronics to energy s...
Straightforward methods to produce pristine graphene flakes in large quantities are based on the liq...
The development of chemical strategies to render graphene viable for incorporation into devices is a...
The successful exfoliation of graphite to graphene sheets in liquid phase via tip sonication was ach...
322-333Graphene is the most widely investigated carbon nanomaterial having two-dimensional honeycomb...
Nanomaterials have many advanced applications, from bio-medicine to flexible electronics to energy s...
Achieving sustainable production of pristine high-quality graphene and other layered materials at lo...
Achieving a sustainable production of pristine high-quality graphene and other layered materials at ...
Due to its unprecedented physical properties, graphene has generated huge interest over the last 7 y...
The main purpose of this work is to experimentally investigate the concentration yields of exfoliat...
The direct exfoliation of graphite to form graphene was investigated in a ternary solvent system con...
Organic solvent is suitable for the exfoliation of graphene. However, for the end application of exf...
The scalable production and dispersion of 2D materials, like graphene, is critical to enable their u...
Four organic amine-based solvents were discovered which enable direct exfoliation of graphite to pro...
none12siAchieving the full control over the production as well as processability of high-quality gra...
Nanomaterials have many advanced applications, from bio-medicine to flexible electronics to energy s...
Straightforward methods to produce pristine graphene flakes in large quantities are based on the liq...
The development of chemical strategies to render graphene viable for incorporation into devices is a...
The successful exfoliation of graphite to graphene sheets in liquid phase via tip sonication was ach...
322-333Graphene is the most widely investigated carbon nanomaterial having two-dimensional honeycomb...
Nanomaterials have many advanced applications, from bio-medicine to flexible electronics to energy s...