Designing high-performance materials for CO2 capture and conversion is of great significance to reduce the greenhouse effect and alleviate the energy crisis. The strategy of doping is widely used to improve activity and selectivity of the materials. However, it is unclear how the doping densities influence the materials’ properties. Herein, we investigated the mechanism of CO2 capture, separation and conversion on MoS2, MoSe2 and Janus MoSSe monolayers with different boron doping levels using density functional theory (DFT) simulations. The results indicate that CO2, H2 and CH4 bind weakly to the monolayers without and with single-atom boron doping, rendering these materials unsuitable for CO2 capture from gas mixtures. In contrast, CO2 bin...
MoS2 is a potential catalyst for the conversion of synthesis gas obtained from different carbon-cont...
MoS2 is a potential catalyst for the conversion of synthesis gas obtained from different carbon-cont...
Rising levels of CO2 concentration in our atmosphere and its contribution to climate change are one ...
Reversible CO2 capture with applied external electric fields on solid adsorbents is a promising appr...
Developing new materials and technologies for efficient CO2 capture, particularly for separation of ...
A density functional theory study was conducted to analyze CO2 adsorption on defective and non-defec...
The design of new, efficient catalysts for the conversion of CO2 to useful fuels under mild conditio...
N2 removal is of great significance to the industrial production and usage of natural gas. It is nec...
The reasonable allocation and control of CO2 concentration in a greenhouse are very important for th...
According to recent studies, gas sensors based on MoSe2 have better detection performance than graph...
CO2 has a potentially bright future as a carbon resource because it is very cheap and abundant. The ...
First principle calculations for a hexagonal (graphene-like) boron nitride (g-BN) monolayer sheet in...
In this work we present the atomistic computational study of the adsorption properties of Co doped M...
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...
MoS2 is a potential catalyst for the conversion of synthesis gas obtained from different carbon-cont...
MoS2 is a potential catalyst for the conversion of synthesis gas obtained from different carbon-cont...
Rising levels of CO2 concentration in our atmosphere and its contribution to climate change are one ...
Reversible CO2 capture with applied external electric fields on solid adsorbents is a promising appr...
Developing new materials and technologies for efficient CO2 capture, particularly for separation of ...
A density functional theory study was conducted to analyze CO2 adsorption on defective and non-defec...
The design of new, efficient catalysts for the conversion of CO2 to useful fuels under mild conditio...
N2 removal is of great significance to the industrial production and usage of natural gas. It is nec...
The reasonable allocation and control of CO2 concentration in a greenhouse are very important for th...
According to recent studies, gas sensors based on MoSe2 have better detection performance than graph...
CO2 has a potentially bright future as a carbon resource because it is very cheap and abundant. The ...
First principle calculations for a hexagonal (graphene-like) boron nitride (g-BN) monolayer sheet in...
In this work we present the atomistic computational study of the adsorption properties of Co doped M...
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...
MoS2 is a potential catalyst for the conversion of synthesis gas obtained from different carbon-cont...
MoS2 is a potential catalyst for the conversion of synthesis gas obtained from different carbon-cont...
Rising levels of CO2 concentration in our atmosphere and its contribution to climate change are one ...