Significant progress has recently been made in single-atom catalysis involving noble metals. We report here a theoretical investigation of the catalytic mechanism of CO oxidation of a non-noble metal single-atom catalyst (SAC) Ni-1/FeOx using density functional theory (DFT). The calculated results show that this new SAC Ni-1/FeOx has a high catalytic activity at room temperature for CO oxidation. CO adsorption strength is a key factor in determining catalytic activity for CO oxidation. Compared with noble-metal catalysts Pt-1/FeOx and Ir-1/FeOx, the catalytic activity for CO oxidation of Ni-1/FeOx is found to be comparable to that of Pt-1/FeOx, but is considerably higher than that of Ir-1/FeOx. Our theoretical prediction of this new non-nob...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
Understanding how the local environment of a "single-atom" catalyst affects stability and reactivity...
Single atom catalysts (SACs) have attracted broad research interest in recent years due to their imp...
A single-atom catalyst (SAC) that was first proposed by us in 2011 has aroused significant recent in...
Through periodic density functional theory (DFT) calculations we have investigated the catalytic mec...
An FeOx-based Pt single-atom catalyst (SAC), Pti/FeOx has stimulated significant recent interest owi...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
We study 14 atomically dispersed transition metals on halite-type oxides (MeO, Me = Fe, Mg, Mn, and ...
We present here a first principles density functional theory investigation of the reactivity of Pt(1...
A novel single-atom catalyst of Fe adsorbed on χ3-borophene has been proposed as a potential catalys...
Single-atom catalysts are at the center of the attention of the heterogeneous catalysis community, b...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Identification of the active sites in heterogeneous catalysis is important for a mechanistic underst...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
Understanding how the local environment of a "single-atom" catalyst affects stability and reactivity...
Single atom catalysts (SACs) have attracted broad research interest in recent years due to their imp...
A single-atom catalyst (SAC) that was first proposed by us in 2011 has aroused significant recent in...
Through periodic density functional theory (DFT) calculations we have investigated the catalytic mec...
An FeOx-based Pt single-atom catalyst (SAC), Pti/FeOx has stimulated significant recent interest owi...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
We study 14 atomically dispersed transition metals on halite-type oxides (MeO, Me = Fe, Mg, Mn, and ...
We present here a first principles density functional theory investigation of the reactivity of Pt(1...
A novel single-atom catalyst of Fe adsorbed on χ3-borophene has been proposed as a potential catalys...
Single-atom catalysts are at the center of the attention of the heterogeneous catalysis community, b...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Identification of the active sites in heterogeneous catalysis is important for a mechanistic underst...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
Understanding how the local environment of a "single-atom" catalyst affects stability and reactivity...
Single atom catalysts (SACs) have attracted broad research interest in recent years due to their imp...