The performance of novel two-dimensional nitrides in carbon capture and storage (CCS) is analyzed for a broad range of pressures and temperatures. Employing an integrated theoretical framework where CO2 adsorption/desorption rates on the M2N (M = Ti, Zr, Hf, V, Nb, Ta, Cr, Mo, and W) surfaces are derived from transition state theory and density functional theory based calculations, the present theoretical simulations consistently predict that, depending on the particular composition, CO2 can be strongly adsorbed and even activated at temperatures above 1000 K. For practical purposes, Ti2N, Zr2N, Hf2N, V2N, Nb2N, and Ta2N are predicted as the best suited materials for CO2 activation. Moreover, the estimated CO2 uptake of 2.32-7.96 mol CO2 kg...
Nanostructured materials, such as zeolites and metal-organic frameworks, have been considered to cap...
Highly ordered mesoporous carbon nitrides (MCN-1-Ts) with uniform rod shaped morphology have been sy...
This dissertation presents the design, synthesis, and characterization of amine-functionalized metal...
Two-dimensional transition metal carbides with a formula of M2C (M = Ti, Zr, Hf, V, Nb, Ta, Cr, Mo, ...
The synthesis of two-dimensional transition metal carbides (MXenes) with a predefined number of atom...
Global warming caused by burning of fossil fuels is indisputably one of mankinds greatest challenges...
The capture and activation of the greenhouse gas carbon dioxide (CO2) is a prerequisite to its catal...
Proficient capture of carbon dioxide (CO2) is considered to be a backbone for environment protection...
Carbon dioxide separations are likely to play an important role in mitigating greenhouse gas emissio...
The separation of carbon dioxide (CO2) from methane (CH4) is critical in biogas upgrading, requiring...
A scalable, template-free synthetic strategy is presented for the preparation of ultramicroporous ca...
Early transition metal carbides (TMC; TM = Ti, Zr, Hf, V, Nb, Ta, Mo) with face-centered cubic cryst...
CO2 is one of the main actors in the greenhouse effect and its removal from the atmosphere is becomi...
Theoretical studies and experiments have suggested that transition metal carbides (TMCs) can be usef...
Catalytic CO2 conversion to fuels and chemicals is important for mitigating the climate change and r...
Nanostructured materials, such as zeolites and metal-organic frameworks, have been considered to cap...
Highly ordered mesoporous carbon nitrides (MCN-1-Ts) with uniform rod shaped morphology have been sy...
This dissertation presents the design, synthesis, and characterization of amine-functionalized metal...
Two-dimensional transition metal carbides with a formula of M2C (M = Ti, Zr, Hf, V, Nb, Ta, Cr, Mo, ...
The synthesis of two-dimensional transition metal carbides (MXenes) with a predefined number of atom...
Global warming caused by burning of fossil fuels is indisputably one of mankinds greatest challenges...
The capture and activation of the greenhouse gas carbon dioxide (CO2) is a prerequisite to its catal...
Proficient capture of carbon dioxide (CO2) is considered to be a backbone for environment protection...
Carbon dioxide separations are likely to play an important role in mitigating greenhouse gas emissio...
The separation of carbon dioxide (CO2) from methane (CH4) is critical in biogas upgrading, requiring...
A scalable, template-free synthetic strategy is presented for the preparation of ultramicroporous ca...
Early transition metal carbides (TMC; TM = Ti, Zr, Hf, V, Nb, Ta, Mo) with face-centered cubic cryst...
CO2 is one of the main actors in the greenhouse effect and its removal from the atmosphere is becomi...
Theoretical studies and experiments have suggested that transition metal carbides (TMCs) can be usef...
Catalytic CO2 conversion to fuels and chemicals is important for mitigating the climate change and r...
Nanostructured materials, such as zeolites and metal-organic frameworks, have been considered to cap...
Highly ordered mesoporous carbon nitrides (MCN-1-Ts) with uniform rod shaped morphology have been sy...
This dissertation presents the design, synthesis, and characterization of amine-functionalized metal...