To address aggravating energy and environment issues, inexpensive, highly active, and durable electrocatalysts as noble metal substitutes both at the anode and cathode are being actively pursued. Among them, heteroatom-doped graphene-based materials show extraordinary electrocatalytic performance, some even close to or outperforming the state-of-the-art noble metals, such as Pt- and IrO₂- based materials. This review provides a concise appraisal on graphene doping methods, possible doping configurations and their unique electrochemical properties, including single and double doping with N, B, S, and P. In addition, heteroatom-doped graphene-based materials are reviewed as electrocatalysts for oxygen reduction, hydrogen evolution, and oxygen...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
Heteroatom doping into the graphitic frameworks have been intensively studied for the development of...
The commercialization of fuel cells and metal-air batteries can only be realized if expensive and sc...
To address aggravating energy and environment issues, inexpensive, highly active, and durable electr...
Graphene exhibits zero band gap, very small electrical resistivity, fast heat dissipation, and fast ...
Carbon nanomaterials are potential materials with their intrinsic structure and property in energy c...
Metal decorated graphene materials are highly important for catalysis. In this work, noble metal dop...
The increasing energy consumption and environmental concerns due to burning fossil fuel are key driv...
Three-dimensional graphene networks (3DGNs) doped with a mono-heteroatom of N or B, or dual-heteroat...
Development of state-of-the-art electrocatalysts with inexpensive and commercially available materia...
N-doped graphene-based materials show excellent promise as metal-free electrocatalysts for the oxyge...
Theoretical studies predicted that doping graphene with nitrogen can tailor its electronic propertie...
In the current work, heteroatom-doped graphene materials containing different atomic ratios of nitro...
The design of highly active and cost-effective electrocatalysts for replacing precious-metal catalys...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
Heteroatom doping into the graphitic frameworks have been intensively studied for the development of...
The commercialization of fuel cells and metal-air batteries can only be realized if expensive and sc...
To address aggravating energy and environment issues, inexpensive, highly active, and durable electr...
Graphene exhibits zero band gap, very small electrical resistivity, fast heat dissipation, and fast ...
Carbon nanomaterials are potential materials with their intrinsic structure and property in energy c...
Metal decorated graphene materials are highly important for catalysis. In this work, noble metal dop...
The increasing energy consumption and environmental concerns due to burning fossil fuel are key driv...
Three-dimensional graphene networks (3DGNs) doped with a mono-heteroatom of N or B, or dual-heteroat...
Development of state-of-the-art electrocatalysts with inexpensive and commercially available materia...
N-doped graphene-based materials show excellent promise as metal-free electrocatalysts for the oxyge...
Theoretical studies predicted that doping graphene with nitrogen can tailor its electronic propertie...
In the current work, heteroatom-doped graphene materials containing different atomic ratios of nitro...
The design of highly active and cost-effective electrocatalysts for replacing precious-metal catalys...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
Heteroatom doping into the graphitic frameworks have been intensively studied for the development of...
The commercialization of fuel cells and metal-air batteries can only be realized if expensive and sc...