Although graphene oxide (GO) has shown enduring popularity in the research community, its synthesis remains cost prohibitive for many of its demonstrated applications. While significant progress has been made on developing an electrochemical route to GO, existing methods have key limitations regarding their cost and scalability. To overcome these challenges, we employ a combination of commercially available fused-deposition-modeling-based 3D printing and highly robust boron-doped diamond with a wide electrochemical potential window to fabricate a scalable packed-bed electrochemical reactor for GO production. The scalability of the reactor along the vertical and lateral dimensions was systematically demonstrated to facilitate its eventual i...
A simple, green and cost-effective approach has been reported to synthesize high-quality graphene ox...
In this study, graphene oxide (GO) was synthesized from graphite flakes using simplified Hummer's me...
We proved that ice crystallized from water molecules within as-synthesized graphene oxide (GO) can b...
Although graphene oxide (GO) has shown enduring popularity in the research community, its synthesis ...
Although graphene oxide (GO) has shown enduring popularity in the research community, its synthesis ...
There has been extensive interest in developing a highly efficient production route toward graphene ...
Conventional chemical oxidation routes for the production of graphene oxide (GO), such as the Hummer...
Here, we report on a new automated electrochemical process for the production of graphene oxide (GO)...
We report a new electrochemical exfoliation method to produce graphene oxide (GO) on a large scale f...
This study examines the synthesis and electrochemical performance of three-dimensional graphene for ...
Graphene oxide (GO) is an attractive alternative to graphene for many applications due to its captiv...
We reported the preparation of colloidal graphene in quantity via the anodic exfoliation of graphite...
A novel top-down electrochemical method is demonstrated to prepare gram quantities of few-layer grap...
Graphene oxide is a promising nanomaterial due to its surface versatility by substitution of functio...
Graphene (GN) has many beneficial properties that encourage wide applications. Various manufacturing...
A simple, green and cost-effective approach has been reported to synthesize high-quality graphene ox...
In this study, graphene oxide (GO) was synthesized from graphite flakes using simplified Hummer's me...
We proved that ice crystallized from water molecules within as-synthesized graphene oxide (GO) can b...
Although graphene oxide (GO) has shown enduring popularity in the research community, its synthesis ...
Although graphene oxide (GO) has shown enduring popularity in the research community, its synthesis ...
There has been extensive interest in developing a highly efficient production route toward graphene ...
Conventional chemical oxidation routes for the production of graphene oxide (GO), such as the Hummer...
Here, we report on a new automated electrochemical process for the production of graphene oxide (GO)...
We report a new electrochemical exfoliation method to produce graphene oxide (GO) on a large scale f...
This study examines the synthesis and electrochemical performance of three-dimensional graphene for ...
Graphene oxide (GO) is an attractive alternative to graphene for many applications due to its captiv...
We reported the preparation of colloidal graphene in quantity via the anodic exfoliation of graphite...
A novel top-down electrochemical method is demonstrated to prepare gram quantities of few-layer grap...
Graphene oxide is a promising nanomaterial due to its surface versatility by substitution of functio...
Graphene (GN) has many beneficial properties that encourage wide applications. Various manufacturing...
A simple, green and cost-effective approach has been reported to synthesize high-quality graphene ox...
In this study, graphene oxide (GO) was synthesized from graphite flakes using simplified Hummer's me...
We proved that ice crystallized from water molecules within as-synthesized graphene oxide (GO) can b...