We propose and assess a criterion for the application of Brønsted-Evans-Polanyi (BEP) relations for dissociation reactions at surfaces. A theory-to-theory comparison with density functional theory calculations is presented on different reactions, metal catalysts, and surface terminations. In particular, the activation energies of CH, CO, and trans-COOH dissociation reactions on (100), (110), (111), and (211) surfaces of Ni, Cu, Rh, Pd, Ag, and Pt are considered. We show that both the activation energy and the reaction energy can be decomposed into two contributions that reflect the influence of reactant and products in determining either the activation energy or the reaction energy. We show that the applicability of the BEP relation implies...
Doctor of PhilosophyDepartment of Chemical EngineeringBin LiuEfficient and selective catalysis lies ...
To be able to simulate activated heterogeneously catalyzed reactions on the edge and corner sites of...
It is shown that for all the essential bond forming and bond breaking reactions on metal surfaces, t...
We propose and assess a criterion for the application of Brønsted-Evans-Polanyi (BEP) relations for ...
As more and more accurate density functional methods emerge, the transferability of Bronsted-Evans-P...
State of the art computational quantum-chemical methods enable the modelling of catalytically active...
In the first chapter we present numerical methods to describe termally activated processes and parti...
COLL 40 Based on computational studies of stepped and non-stepped transition metal surfaces the reac...
Accurate barriers for rate controlling elementary surface reactions are key to understanding, contro...
International audienceLinear relations are found when the energies of the transition states (equatio...
271 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Through the Polanyi Relations...
The burgeoning field of nanoscience has stimulated an intense interest in properties that depend on ...
The classic system that describes weakly activated dissociation in heterogeneous catalysis has been ...
Accurately simulating heterogeneously catalyzed reactions requires reliable barriers for molecules r...
Doctor of PhilosophyDepartment of Chemical EngineeringBin LiuEfficient and selective catalysis lies ...
To be able to simulate activated heterogeneously catalyzed reactions on the edge and corner sites of...
It is shown that for all the essential bond forming and bond breaking reactions on metal surfaces, t...
We propose and assess a criterion for the application of Brønsted-Evans-Polanyi (BEP) relations for ...
As more and more accurate density functional methods emerge, the transferability of Bronsted-Evans-P...
State of the art computational quantum-chemical methods enable the modelling of catalytically active...
In the first chapter we present numerical methods to describe termally activated processes and parti...
COLL 40 Based on computational studies of stepped and non-stepped transition metal surfaces the reac...
Accurate barriers for rate controlling elementary surface reactions are key to understanding, contro...
International audienceLinear relations are found when the energies of the transition states (equatio...
271 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Through the Polanyi Relations...
The burgeoning field of nanoscience has stimulated an intense interest in properties that depend on ...
The classic system that describes weakly activated dissociation in heterogeneous catalysis has been ...
Accurately simulating heterogeneously catalyzed reactions requires reliable barriers for molecules r...
Doctor of PhilosophyDepartment of Chemical EngineeringBin LiuEfficient and selective catalysis lies ...
To be able to simulate activated heterogeneously catalyzed reactions on the edge and corner sites of...
It is shown that for all the essential bond forming and bond breaking reactions on metal surfaces, t...