The shape of metal nanoparticles has a crucial role in their performance in heterogeneous catalysis as well as photocatalysis. We propose a method of determining the shape of nanoparticles based on measurements of single-electron quantum levels. We first consider nanoparticles in two shapes of high symmetry: cube and sphere. We then focus on Au nanoparticles in three characteristic shapes that can be found in metal/inorganic or metal/organic compounds routinely used in catalysis and photocatalysis. We describe the methodology we use to solve the Schrödinger equation for arbitrary nanoparticle shape. The method gives results that agree well with analytical solutions for the high-symmetry shapes. When we apply our method in realistic gold nan...
This thesis is titled Gold based nanorods: tuning the structure for catalysis and sensing and descri...
There is a wide-spread interest to design ambient-stable gold nanoparticles with tailored physico-ch...
There are some unresolved fundamental issues for metal nanoclusters; for instance, the close-packed ...
The shape of metal nanoparticles has a crucial role in their performance in heterogeneous catalysis ...
Background: The majority of complex and advanced materials contain nanoparticles. The properties of ...
Morphology-dependent nanocatalysis: metal particlesThe rapid development of materials science now en...
This review article focuses on the impacts of recent advances in solution phase precious metal nanop...
The controlled growth promoted by the use of ligands can affect the structural properties of nanopar...
Metal nanoparticles (NPs) are ubiquitous in many fields, from nanotechnology to heterogeneous cataly...
From catalytic studies in surface science, it has been shown that the catalytic activity is dependen...
While it is well established that nanoparticle shape can depend on equilibrium thermodynamics or gro...
Determining geometric and electronic structures of gold nanoparticles are of fundamental interest in...
Rapidly growing research interests surround heterogeneous nanocatalysis, in which metal nanoparticle...
Exciting new opportunities are emerging in the field of catalysis based on nanotechnology approaches...
To apply the knowledge of reaction mechanisms of heterogeneously catalyzed reactions on the atomic s...
This thesis is titled Gold based nanorods: tuning the structure for catalysis and sensing and descri...
There is a wide-spread interest to design ambient-stable gold nanoparticles with tailored physico-ch...
There are some unresolved fundamental issues for metal nanoclusters; for instance, the close-packed ...
The shape of metal nanoparticles has a crucial role in their performance in heterogeneous catalysis ...
Background: The majority of complex and advanced materials contain nanoparticles. The properties of ...
Morphology-dependent nanocatalysis: metal particlesThe rapid development of materials science now en...
This review article focuses on the impacts of recent advances in solution phase precious metal nanop...
The controlled growth promoted by the use of ligands can affect the structural properties of nanopar...
Metal nanoparticles (NPs) are ubiquitous in many fields, from nanotechnology to heterogeneous cataly...
From catalytic studies in surface science, it has been shown that the catalytic activity is dependen...
While it is well established that nanoparticle shape can depend on equilibrium thermodynamics or gro...
Determining geometric and electronic structures of gold nanoparticles are of fundamental interest in...
Rapidly growing research interests surround heterogeneous nanocatalysis, in which metal nanoparticle...
Exciting new opportunities are emerging in the field of catalysis based on nanotechnology approaches...
To apply the knowledge of reaction mechanisms of heterogeneously catalyzed reactions on the atomic s...
This thesis is titled Gold based nanorods: tuning the structure for catalysis and sensing and descri...
There is a wide-spread interest to design ambient-stable gold nanoparticles with tailored physico-ch...
There are some unresolved fundamental issues for metal nanoclusters; for instance, the close-packed ...