High-capacitance electrochemical supercapacitors are promising devices due to their long-term stability and simple device construction. Unlike available reports on biomass-derived carbon as supercapacitor electrodes, in this paper, we report novel few-layer graphene-like microporous carbon nanosheets obtained from a single biomass precursor, which yield very high specific capacitance. A simple, ultra-low cost, one-step activation-free approach yields few-layer graphene-like microporous carbon nanosheets in the presence of heteroatoms by using ginger root as a biomass precursor. Suitable heteroatom content combined with porous graphene-like carbon nanosheet structure enhances the specific capacitance. The as-prepared carbon nanosheets from g...
Developing high-performance supercapacitors with low-cost electrode materials that possess high powe...
We created unique interconnected partially graphitic carbon nanosheets (10-30 nm in thickness) with ...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...
In this study, we adopted a simple method to synthesize a graphene-like-structured nanoporous carbon...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
The development of flexible electrodes with high mass loading and efficient electron/ion transport i...
The development of flexible electrodes with high mass loading and efficient electron/ion transport i...
The development of flexible electrodes with high mass loading and efficient electron/ion transport i...
Here, we present an ingenious approach to convert bio-waste into porous carbon to fabricate a workin...
The scalable design and inexpensive synthesis of high-surface-area conductive porous carbon electrod...
A low-cost and high-performance carbon material for supercapacitors is fabricated via a simple yet v...
Here, a controlled green synthesis route involving hydrothermal pre-carbonization cum pyrolysis is r...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...
Abstract Biomass is rich, renewable, sustainable, and green resources, thereby excellent raw materia...
Developing high-performance supercapacitors with low-cost electrode materials that possess high powe...
We created unique interconnected partially graphitic carbon nanosheets (10-30 nm in thickness) with ...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...
In this study, we adopted a simple method to synthesize a graphene-like-structured nanoporous carbon...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
The development of flexible electrodes with high mass loading and efficient electron/ion transport i...
The development of flexible electrodes with high mass loading and efficient electron/ion transport i...
The development of flexible electrodes with high mass loading and efficient electron/ion transport i...
Here, we present an ingenious approach to convert bio-waste into porous carbon to fabricate a workin...
The scalable design and inexpensive synthesis of high-surface-area conductive porous carbon electrod...
A low-cost and high-performance carbon material for supercapacitors is fabricated via a simple yet v...
Here, a controlled green synthesis route involving hydrothermal pre-carbonization cum pyrolysis is r...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...
Abstract Biomass is rich, renewable, sustainable, and green resources, thereby excellent raw materia...
Developing high-performance supercapacitors with low-cost electrode materials that possess high powe...
We created unique interconnected partially graphitic carbon nanosheets (10-30 nm in thickness) with ...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...