N-doped and metal-N-doped carbons are receiving increasing attention for environmental and electronic applications. Modifications of carbons such as biomass-derived char by N-doping allow for modulating carbons’ acid-base character, adsorption capacity, catalytic performance, and electrochemical properties (e.g., electrical conductivity and capacitance). N-doped carbons are obtained from the thermal co-processing of C-rich and N-rich sources (e.g., lignocellulosic biomass, proteins, and ammonia). Although the literature is abundant in papers on producing heteroatom-doped carbon nanotubes, carbon fibers, and other high-value carbonaceous products from non-renewable sources, the number of articles reporting N-doped chars from bioresources is ...
Hydrothermally treated biomass could not only be used as a fuel or a fertilizer but it can also be r...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
The synthesis and properties of an oxygen reduction catalyst based on a unique 3-dimensional (3D) ni...
Nitrogen-doped carbons were produced using hydrothermal carbonization of nitrogen-containing carbohy...
Nitrogen-doped biomass-derived carbon materials were prepared by hydrothermal carbonization of gluco...
Marine-derived as well as freshwater feedstock offers important benefits, such as abundance, morphol...
Current energy shortages and environmental crises have compelled researchers to look for inexpensive...
A cost-effective green synthesis method for nitrogen-doped porous carbon from Chinese steamed bread ...
Nitrogen-doped carbon materials are synthesized via an effective, sustainable, and green one-step ro...
A facile one-pot method using NaNO3 as etching agent in a molten salt medium is developed to tune th...
International audienceNitrogen-doped carbons were produced using hydrothermal carbonization of nitro...
This contribution discloses a new methodology for the preparation of N-doped carbon via the hydrothe...
Electrocatalytic reduction of carbon dioxide to high value-added chemicals is essential for sustaina...
Nano-scaled carbons were produced by thermal treatment of pine wood chips and bio-char. The influenc...
It is absolutely essential to convert biomass waste into usable energy in a rational manner. This in...
Hydrothermally treated biomass could not only be used as a fuel or a fertilizer but it can also be r...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
The synthesis and properties of an oxygen reduction catalyst based on a unique 3-dimensional (3D) ni...
Nitrogen-doped carbons were produced using hydrothermal carbonization of nitrogen-containing carbohy...
Nitrogen-doped biomass-derived carbon materials were prepared by hydrothermal carbonization of gluco...
Marine-derived as well as freshwater feedstock offers important benefits, such as abundance, morphol...
Current energy shortages and environmental crises have compelled researchers to look for inexpensive...
A cost-effective green synthesis method for nitrogen-doped porous carbon from Chinese steamed bread ...
Nitrogen-doped carbon materials are synthesized via an effective, sustainable, and green one-step ro...
A facile one-pot method using NaNO3 as etching agent in a molten salt medium is developed to tune th...
International audienceNitrogen-doped carbons were produced using hydrothermal carbonization of nitro...
This contribution discloses a new methodology for the preparation of N-doped carbon via the hydrothe...
Electrocatalytic reduction of carbon dioxide to high value-added chemicals is essential for sustaina...
Nano-scaled carbons were produced by thermal treatment of pine wood chips and bio-char. The influenc...
It is absolutely essential to convert biomass waste into usable energy in a rational manner. This in...
Hydrothermally treated biomass could not only be used as a fuel or a fertilizer but it can also be r...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
The synthesis and properties of an oxygen reduction catalyst based on a unique 3-dimensional (3D) ni...