Developing new materials and technologies for efficient CO2 capture, particularly for separation of CO2 post-combustion, will significantly reduce the CO2 concentration and its impacts on the environment. A challenge for CO2 capture is to obtain high performance adsorbents with both high selectivity and easy regeneration. Here, CO2 capture/regeneration on MoS2 monolayers controlled by turning on/off external electric fields is comprehensively investigated through a density functional theory calculation. The calculated results indicate that CO2 forms a weak interaction with MoS2 monolayers in the absence of an electric field, but strongly interacts with MoS2 monolayers when an electric field of 0.004 a.u. is applied. Moreover, the adsorbed C...
Heavy dependence on fossil fuels has caused an astonishing growth in atmospheric CO2 levels for the ...
With the electrochemical carbon dioxide reduction reaction (CO2RR) being a promising method to reduc...
A new phenomenon, electric field enhanced adsorption and diffusion of lithium, magnesium and aluminu...
Reversible CO2 capture with applied external electric fields on solid adsorbents is a promising appr...
The use of advanced materials with a high selectivity and easy regeneration to capture CO2 from a ga...
Designing high-performance materials for CO2 capture and conversion is of great significance to redu...
According to recent studies, gas sensors based on MoSe2 have better detection performance than graph...
The reasonable allocation and control of CO2 concentration in a greenhouse are very important for th...
A density functional theory study was conducted to analyze CO2 adsorption on defective and non-defec...
Developing advanced materials and new technologies for efficient CO2 capture and gas separation can ...
First-principles calculations within density functional theory have been carried out to investigate ...
The space within the interlayer of 2-dimensional (2D) nanosheets provides new and intriguing confine...
Toxic gaseous SO<sub>2</sub> adsorption on O-terminated M<sub>2</sub>CO<sub>2</sub> (M = Sc, Hf, Zr,...
In this paper, a Ni-doped MoS2 monolayer (Ni-MoS2) has been proposed as a novel gas adsorbent to be ...
N2 removal is of great significance to the industrial production and usage of natural gas. It is nec...
Heavy dependence on fossil fuels has caused an astonishing growth in atmospheric CO2 levels for the ...
With the electrochemical carbon dioxide reduction reaction (CO2RR) being a promising method to reduc...
A new phenomenon, electric field enhanced adsorption and diffusion of lithium, magnesium and aluminu...
Reversible CO2 capture with applied external electric fields on solid adsorbents is a promising appr...
The use of advanced materials with a high selectivity and easy regeneration to capture CO2 from a ga...
Designing high-performance materials for CO2 capture and conversion is of great significance to redu...
According to recent studies, gas sensors based on MoSe2 have better detection performance than graph...
The reasonable allocation and control of CO2 concentration in a greenhouse are very important for th...
A density functional theory study was conducted to analyze CO2 adsorption on defective and non-defec...
Developing advanced materials and new technologies for efficient CO2 capture and gas separation can ...
First-principles calculations within density functional theory have been carried out to investigate ...
The space within the interlayer of 2-dimensional (2D) nanosheets provides new and intriguing confine...
Toxic gaseous SO<sub>2</sub> adsorption on O-terminated M<sub>2</sub>CO<sub>2</sub> (M = Sc, Hf, Zr,...
In this paper, a Ni-doped MoS2 monolayer (Ni-MoS2) has been proposed as a novel gas adsorbent to be ...
N2 removal is of great significance to the industrial production and usage of natural gas. It is nec...
Heavy dependence on fossil fuels has caused an astonishing growth in atmospheric CO2 levels for the ...
With the electrochemical carbon dioxide reduction reaction (CO2RR) being a promising method to reduc...
A new phenomenon, electric field enhanced adsorption and diffusion of lithium, magnesium and aluminu...