The number of applications based on graphene, few-layer graphene, and nanographite is rapidly increasing. A large-scale process for production of these materials is critically needed to achieve cost-effective commercial products. Here, we present a novel process to mechanically exfoliate industrial quantities of nanographite from graphite in an aqueous environment with low energy consumption and at controlled shear conditions. This process, based on hydrodynamic tube shearing, produced nanometer-thick and micrometer-wide flakes of nanographite with a production rate exceeding 500 gh-1 with an energy consumption about 10 Whg-1. In addition, to facilitate large-area coating, we show that the nanographite can be mixed with nanofibrillated cell...
Abstract In the past two decades, graphene has been one of the most studied materials due to its exc...
Abstract In the past two decades, graphene has been one of the most studied materials due to its exc...
Graphene has become the most studied nanomaterial of the past decade, due to its unique electronic p...
<div><p>The number of applications based on graphene, few-layer graphene, and nanographite is rapidl...
The number of applications based on graphene, few-layer graphene, and nanographite is rapidly increa...
Graphene and other graphitic materials are suggested as a route to cheap, high‐performance, environm...
Graphene and other graphitic materials are suggested as a route to cheap, high-performance, environm...
Graphene is a promising material for diverse applications, such as in composites, optoelectronics, p...
A novel route is proposed to produce graphite nanoplatelets (GNPs) and graphene sheets. The natural ...
Graphene is a promising material for diverse applications, such as in composites, optoelectronics, p...
Dispersing graphite nanpoflakes in aqueous suspension is essential both during their processing and ...
Dispersing graphite nanpoflakes in aqueous suspension is essential both during their processing and ...
To exploit the remarkable properties of graphene fully, an efficient large-scale production method i...
To exploit the remarkable properties of graphene fully, an efficient large-scale production method i...
A novel method for producing graphene via enhanced shear exfoliation in a high-pressure fluid has be...
Abstract In the past two decades, graphene has been one of the most studied materials due to its exc...
Abstract In the past two decades, graphene has been one of the most studied materials due to its exc...
Graphene has become the most studied nanomaterial of the past decade, due to its unique electronic p...
<div><p>The number of applications based on graphene, few-layer graphene, and nanographite is rapidl...
The number of applications based on graphene, few-layer graphene, and nanographite is rapidly increa...
Graphene and other graphitic materials are suggested as a route to cheap, high‐performance, environm...
Graphene and other graphitic materials are suggested as a route to cheap, high-performance, environm...
Graphene is a promising material for diverse applications, such as in composites, optoelectronics, p...
A novel route is proposed to produce graphite nanoplatelets (GNPs) and graphene sheets. The natural ...
Graphene is a promising material for diverse applications, such as in composites, optoelectronics, p...
Dispersing graphite nanpoflakes in aqueous suspension is essential both during their processing and ...
Dispersing graphite nanpoflakes in aqueous suspension is essential both during their processing and ...
To exploit the remarkable properties of graphene fully, an efficient large-scale production method i...
To exploit the remarkable properties of graphene fully, an efficient large-scale production method i...
A novel method for producing graphene via enhanced shear exfoliation in a high-pressure fluid has be...
Abstract In the past two decades, graphene has been one of the most studied materials due to its exc...
Abstract In the past two decades, graphene has been one of the most studied materials due to its exc...
Graphene has become the most studied nanomaterial of the past decade, due to its unique electronic p...