Single-atom catalysts are at the center of the attention of the heterogeneous catalysis community, because they exhibit unique electronic structure distinct from nanoparticulate forms resulting in very different catalytic performance combined with increased usage of often costly transition metals. Proper selection of a support that can stably keep the metal in a high dispersion is crucial. Here, we employ spin-polarized density functional theory and microkinetics simulations to identify optimum LaBO3 (B = Mn, Fe, Co, Ni) supported catalysts dispersing platinum group metals as atoms on their surface. We identify a strong correlation between the CO adsorption energy and the d-band center of the doped metal atom. These CO adsorption strength d...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Single-atom catalysts are at the center of the attention of the heterogeneous catalysis community, b...
Understanding the intrinsic catalytic properties of perovskite materials can accelerate the developm...
\u3cp\u3e Understanding the intrinsic catal...
Understanding the intrinsic catalytic properties of perovskite materials can accelerate the developm...
Understanding the intrinsic catalytic properties of perovskite materials can accelerate the develop...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
We study 14 atomically dispersed transition metals on halite-type oxides (MeO, Me = Fe, Mg, Mn, and ...
SSCI-VIDE+ECI2D:ING+TLN:FMO:JRO:PAF:LPIInternational audienceNoble metals are used as catalysts for ...
In this work, we performed density functional theory (DFT) calculations with inclusion of Hubbard U ...
Significant progress has recently been made in single-atom catalysis involving noble metals. We repo...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
A single-atom catalyst (SAC) that was first proposed by us in 2011 has aroused significant recent in...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Single-atom catalysts are at the center of the attention of the heterogeneous catalysis community, b...
Understanding the intrinsic catalytic properties of perovskite materials can accelerate the developm...
\u3cp\u3e Understanding the intrinsic catal...
Understanding the intrinsic catalytic properties of perovskite materials can accelerate the developm...
Understanding the intrinsic catalytic properties of perovskite materials can accelerate the develop...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
We study 14 atomically dispersed transition metals on halite-type oxides (MeO, Me = Fe, Mg, Mn, and ...
SSCI-VIDE+ECI2D:ING+TLN:FMO:JRO:PAF:LPIInternational audienceNoble metals are used as catalysts for ...
In this work, we performed density functional theory (DFT) calculations with inclusion of Hubbard U ...
Significant progress has recently been made in single-atom catalysis involving noble metals. We repo...
Understanding and tuning the catalytic properties of metals atomically dispersed on oxides are major...
A single-atom catalyst (SAC) that was first proposed by us in 2011 has aroused significant recent in...
Platinum-based heterogeneous catalysts are critical to many important commercial chemical processes,...
Heterogeneous single-atom catalysts involve isolated metal atoms anchored to a support, displaying h...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...