Through periodic density functional theory (DFT) calculations we have investigated the catalytic mechanism of CO oxidation on an Ir-1/FeOx single-atom catalyst (SAC). The rate-determining step in the catalytic cycle of CO oxidation is shown to be the formation of the second CO2 between the adsorbed CO on the surface of Ir-1/FeOx and the dissociated O atom from gas phase. Comparing with Pt-1/FeOx catalyst, the reaction activation barrier for CO oxidation is higher by 0.62 eV and the adsorption energy for CO molecule is larger by 0.69 eV on Ir-1/FeOx. These results reveal that Ir-1/FeOx catalyst has a lower activity for CO oxidation than Pt-1/FeOx, which is consistent with our experimental results. The results can help to understand the funda...
This work reported the adsorption and reaction performance of FeOx supported subnanometer cluster an...
Single-atom catalysts (SACs) have been extensively applied in CO2 reduction reactions (CO2RRs) due t...
Formations of an ultrathin oxide layer on noble metal catalysts affect the characteristics of fundam...
A single-atom catalyst (SAC) that was first proposed by us in 2011 has aroused significant recent in...
An FeOx-based Pt single-atom catalyst (SAC), Pti/FeOx has stimulated significant recent interest owi...
Significant progress has recently been made in single-atom catalysis involving noble metals. We repo...
Engineering of high-performance catalysts is of great importance for reducing the greenhouse gas emi...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
A novel single-atom catalyst of Fe adsorbed on χ3-borophene has been proposed as a potential catalys...
High specific activity and cost effectiveness of single-atom catalysts hold practical value for wate...
We study 14 atomically dispersed transition metals on halite-type oxides (MeO, Me = Fe, Mg, Mn, and ...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
Single-atom catalysts (SACs) bridge homo- and heterogeneous catalysis because the active site is a m...
In the present study, we perform systematic density functional investigations on the single-atom Pt ...
Single atom catalysts (SACs) have attracted broad research interest in recent years due to their imp...
This work reported the adsorption and reaction performance of FeOx supported subnanometer cluster an...
Single-atom catalysts (SACs) have been extensively applied in CO2 reduction reactions (CO2RRs) due t...
Formations of an ultrathin oxide layer on noble metal catalysts affect the characteristics of fundam...
A single-atom catalyst (SAC) that was first proposed by us in 2011 has aroused significant recent in...
An FeOx-based Pt single-atom catalyst (SAC), Pti/FeOx has stimulated significant recent interest owi...
Significant progress has recently been made in single-atom catalysis involving noble metals. We repo...
Engineering of high-performance catalysts is of great importance for reducing the greenhouse gas emi...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
A novel single-atom catalyst of Fe adsorbed on χ3-borophene has been proposed as a potential catalys...
High specific activity and cost effectiveness of single-atom catalysts hold practical value for wate...
We study 14 atomically dispersed transition metals on halite-type oxides (MeO, Me = Fe, Mg, Mn, and ...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
Single-atom catalysts (SACs) bridge homo- and heterogeneous catalysis because the active site is a m...
In the present study, we perform systematic density functional investigations on the single-atom Pt ...
Single atom catalysts (SACs) have attracted broad research interest in recent years due to their imp...
This work reported the adsorption and reaction performance of FeOx supported subnanometer cluster an...
Single-atom catalysts (SACs) have been extensively applied in CO2 reduction reactions (CO2RRs) due t...
Formations of an ultrathin oxide layer on noble metal catalysts affect the characteristics of fundam...