There exist a great many varieties of nanoparticles whose catalytic activities can be widely adjusted by changing their composition, shape, and size. Nørskov’s concepts to correlate the d-band center, adsorption energy, and activation energy offer an innovative approach to efficiently investigate the catalytic properties. Taking binary noble-metal polyhedral nanoparticles as representative systems, we found from first-principles simulations that the well-established scaling relations of the adsorption energies for extended surfaces can be seamlessly extended to the nanoscale. A systematic investigation of the correlation relations of the adsorption energies between the AH<sub><i>X</i></sub> groups and the corresponding A atoms in the binary...
Understanding the factors controlling a catalyst activity, selectivity, and stability is a complicat...
The experimental design of improved nanocatalysts is usually based on shape control and is surface-l...
This thesis will focus on DFT for calculations of large metallic nanoparticles. It will show new alg...
The physicochemical properties of materials are directly related to their size. The ability to under...
Catalytic properties of noble-metal nanoparticles (NPs) are largely determined by their surface morp...
International audiencePlatinum is a prominent catalyst for a multiplicity of reactions because of it...
Computational screening for new and improved catalyst materials relies on accurate and low-cost pred...
We present an approach to study nanocatalysis using density functional theory (DFT), statistical mec...
With a density functional theory method, we studied computationally the size dependence of adsorptio...
International audienceSurface energy is a key quantity that controls many physical properties of mat...
Platinum is a prominent catalyst for a multiplicity of reactions because of its high activity and st...
Surface energy is a key quantity that controls many physical properties of materials, yet determinin...
Nanoparticle sintering remains a fundamental problem in heterogeneous catalysis, motivating mechanis...
The de novo design of nanocatalysts with high activity is a challenging task, since prediction of ca...
We use an informational statistical mechanics approach to study the catalytic thermodynamics of plat...
Understanding the factors controlling a catalyst activity, selectivity, and stability is a complicat...
The experimental design of improved nanocatalysts is usually based on shape control and is surface-l...
This thesis will focus on DFT for calculations of large metallic nanoparticles. It will show new alg...
The physicochemical properties of materials are directly related to their size. The ability to under...
Catalytic properties of noble-metal nanoparticles (NPs) are largely determined by their surface morp...
International audiencePlatinum is a prominent catalyst for a multiplicity of reactions because of it...
Computational screening for new and improved catalyst materials relies on accurate and low-cost pred...
We present an approach to study nanocatalysis using density functional theory (DFT), statistical mec...
With a density functional theory method, we studied computationally the size dependence of adsorptio...
International audienceSurface energy is a key quantity that controls many physical properties of mat...
Platinum is a prominent catalyst for a multiplicity of reactions because of its high activity and st...
Surface energy is a key quantity that controls many physical properties of materials, yet determinin...
Nanoparticle sintering remains a fundamental problem in heterogeneous catalysis, motivating mechanis...
The de novo design of nanocatalysts with high activity is a challenging task, since prediction of ca...
We use an informational statistical mechanics approach to study the catalytic thermodynamics of plat...
Understanding the factors controlling a catalyst activity, selectivity, and stability is a complicat...
The experimental design of improved nanocatalysts is usually based on shape control and is surface-l...
This thesis will focus on DFT for calculations of large metallic nanoparticles. It will show new alg...