Carbon dioxide (CO2) capture is regarded as one of the biggest challenges of the 21st century; therefore, intense research effort has been dedicated in the area of developing new materials for efficient CO2 capture. Here, we report high CO2 capture capacity in the low region of applied CO2 pressures observed with ultramicroporous silicon nitride-based material. The latter is synthesized by a facile one-step NH3-assisted thermolysis of a polysilazane. Our newly developed material for CO2 capture has the following outstanding properties: (i) one of the highest CO2 capture capacities per surface area of micropores, with a CO2 uptake of 2.35 mmol g−1 at 273 K and 1 bar (ii) a low isosteric heat of adsorption (27.6 kJ mol−1), which is independen...
N-doped carbon material constitutes abundant of micropores and basic nitrogen species that have pote...
The increase of global CO2 concentration is the main responsible for global warming. Nitrogen-contai...
Energy-efficient CO<sub>2</sub> capture is a stringent demand for green and sustainable energy suppl...
A good catch of CO 2! It is demonstrated for the first time that a high-surface-area, inorganic-base...
We have developed a simple and general synthesis strategy to tune the chemical composition and pore ...
Microporous carbon materials with extremely small pore size are prepared by employing polyaniline as...
Highly ordered mesoporous carbon nitrides (MCN-1-Ts) with uniform rod shaped morphology have been sy...
Our society depends overwhelmingly on carbon based resources (coal, natural gas and oil). The use of...
Mesoporous carbon nitrides with well-ordered 3D porous structure and large, tuneable cage-type mesop...
In this article, we report a new sustainable synthesis procedure for manufacturing chitosan/silica C...
In order to mitigate climate change driven by the observed high levels of carbon dioxide (CO2) in th...
In order to mitigate climate change driven by the observed high levels of carbon dioxide (CO2) in th...
Polyalkoxysilsesquiazanes ([ROSi(NH)1.5]n, ROSZ, R = Et, nPr, iPr, nBu, sBu, nHex, sHex, cHex, decah...
In this work, ordered three-dimensionally micromesoporous carbon composed of large spherical mesopor...
CO2 capture via solid adsorption technology relies on the development of low-cost and high-performan...
N-doped carbon material constitutes abundant of micropores and basic nitrogen species that have pote...
The increase of global CO2 concentration is the main responsible for global warming. Nitrogen-contai...
Energy-efficient CO<sub>2</sub> capture is a stringent demand for green and sustainable energy suppl...
A good catch of CO 2! It is demonstrated for the first time that a high-surface-area, inorganic-base...
We have developed a simple and general synthesis strategy to tune the chemical composition and pore ...
Microporous carbon materials with extremely small pore size are prepared by employing polyaniline as...
Highly ordered mesoporous carbon nitrides (MCN-1-Ts) with uniform rod shaped morphology have been sy...
Our society depends overwhelmingly on carbon based resources (coal, natural gas and oil). The use of...
Mesoporous carbon nitrides with well-ordered 3D porous structure and large, tuneable cage-type mesop...
In this article, we report a new sustainable synthesis procedure for manufacturing chitosan/silica C...
In order to mitigate climate change driven by the observed high levels of carbon dioxide (CO2) in th...
In order to mitigate climate change driven by the observed high levels of carbon dioxide (CO2) in th...
Polyalkoxysilsesquiazanes ([ROSi(NH)1.5]n, ROSZ, R = Et, nPr, iPr, nBu, sBu, nHex, sHex, cHex, decah...
In this work, ordered three-dimensionally micromesoporous carbon composed of large spherical mesopor...
CO2 capture via solid adsorption technology relies on the development of low-cost and high-performan...
N-doped carbon material constitutes abundant of micropores and basic nitrogen species that have pote...
The increase of global CO2 concentration is the main responsible for global warming. Nitrogen-contai...
Energy-efficient CO<sub>2</sub> capture is a stringent demand for green and sustainable energy suppl...