<p>Computational high-throughput screening is an essential tool for catalyst design, limited primarily by the efficiency with which accurate predictions can be made. In bulk heterogeneous catalysis, linear free energy relationships (LFERs) have been extensively developed to relate elementary step activation energies, and thus overall catalytic activity, back to the adsorption energies of key intermediates, dramatically reducing the computational cost of screening. The applicability of these LFERs to single-site catalysts remains unclear, owing to the directional, covalent metal-ligand bonds and the broader chemical space of accessible ligand scaffolds. Through a computational screen of nearly 500 model Fe(II) complexes for CH<sub>4</sub> hy...
In homogeneous catalysis, the turnover frequency (TOF) and turnover number (TON) are the most common...
Activation of the C–H bonds in ethane to form ethanol is a highly desirable, yet challenging, reacti...
In homogeneous catalysis, the structure and electronic configuration of the active catalysts can var...
Computational high-throughput screening is an essential tool for catalyst design, limited primarily ...
Computational high-throughput screening is an essential tool for catalyst design, limited primarily ...
© 2020 American Chemical Society. The design of selective and active C−H activation catalysts for di...
Linear energy scaling laws connect the kinetic and thermodynamic parameters of key elementary steps ...
Divalent iron sites in tri-iron oxo-centered metal nodes in metal–organic frameworks (MOFs) catalyze...
Linear free energy scaling relationships (LFESRs) and volcano plots are routinely used to assess the...
Divalent iron sites in tri-iron oxo-centered metal nodes in metal−organic frameworks (MOFs) catalyze...
In this work, we leverage advances in computational screening based on periodic density functional t...
Single non-heme Fe(II) ions present as structural moieties in several metal–organic frameworks (e.g...
Linear free energy scaling relationships (LFESRs) and volcano plots are routinely used to assess the...
The design of synthetic inorganic catalysts mimicking the first coordination spheres of enzymatic co...
Understanding the scaling relations of adsorption energies and activation energies greatly facilitat...
In homogeneous catalysis, the turnover frequency (TOF) and turnover number (TON) are the most common...
Activation of the C–H bonds in ethane to form ethanol is a highly desirable, yet challenging, reacti...
In homogeneous catalysis, the structure and electronic configuration of the active catalysts can var...
Computational high-throughput screening is an essential tool for catalyst design, limited primarily ...
Computational high-throughput screening is an essential tool for catalyst design, limited primarily ...
© 2020 American Chemical Society. The design of selective and active C−H activation catalysts for di...
Linear energy scaling laws connect the kinetic and thermodynamic parameters of key elementary steps ...
Divalent iron sites in tri-iron oxo-centered metal nodes in metal–organic frameworks (MOFs) catalyze...
Linear free energy scaling relationships (LFESRs) and volcano plots are routinely used to assess the...
Divalent iron sites in tri-iron oxo-centered metal nodes in metal−organic frameworks (MOFs) catalyze...
In this work, we leverage advances in computational screening based on periodic density functional t...
Single non-heme Fe(II) ions present as structural moieties in several metal–organic frameworks (e.g...
Linear free energy scaling relationships (LFESRs) and volcano plots are routinely used to assess the...
The design of synthetic inorganic catalysts mimicking the first coordination spheres of enzymatic co...
Understanding the scaling relations of adsorption energies and activation energies greatly facilitat...
In homogeneous catalysis, the turnover frequency (TOF) and turnover number (TON) are the most common...
Activation of the C–H bonds in ethane to form ethanol is a highly desirable, yet challenging, reacti...
In homogeneous catalysis, the structure and electronic configuration of the active catalysts can var...