Supported nanoclusters have an important future in chemical processes such as catalysis. However, to optimize the properties of supported nanoclusters, attention must be paid to the electronic properties of both adsorbate and substrate materials. Highly ordered pyrolytic graphite is commonly used as a substrate for Au nanoclusters; however, cluster functionality and mobility is a problem on this inert surface. Therefore, we have designed a model for Li-doped graphite and investigated the electronic properties of adsorbed Au atoms and nanoclusters on this material using density functional theory (DFT). We find that increasing the concentration of Li atoms in the substrate results in improved adsorption for both Au atoms and Au<sub>16</sub> n...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
Periodic density functional theory calculations on large supercells have been carried out to investi...
Gold’s structure-dependent catalytic activity motivates the study of reactions on a range of gold na...
Supported nanoclusters have an important future in chemical processes such as catalysis. However, to...
Supported nanoclusters have an important future in chemical processes such as catalysis. However, to...
The structural, energetic, and electronic properties of the Li/graphite system are studied through d...
Soft-landed adsorption of Au-16 on bilayered graphene is investigated using density functional theor...
During the last decades the specific manipulation of matter on the (sub-) nanometer scale, also know...
Adsorption of Li and Na on pristine and defective graphene and graphene oxide (GO) is studied using ...
The technological potential of functionalized graphene has recently stimulated considerable interest...
Adsorption of gold atoms and clusters (N=6) on a graphite (0001) surface with defects has been studi...
Gold is mainly present in the form of [Au(CN)2]− during the cyanide leaching process, and this...
Adsorption of Li and Na on pristine and defective graphene and graphene oxide (GO) is studied using ...
The origin of the extraordinary catalytic activity of gold nanoparticles is discussed on the basis o...
The adsorption and activation of iodo-, bromo-, and chlorobenzene over gold catalysts of different ...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
Periodic density functional theory calculations on large supercells have been carried out to investi...
Gold’s structure-dependent catalytic activity motivates the study of reactions on a range of gold na...
Supported nanoclusters have an important future in chemical processes such as catalysis. However, to...
Supported nanoclusters have an important future in chemical processes such as catalysis. However, to...
The structural, energetic, and electronic properties of the Li/graphite system are studied through d...
Soft-landed adsorption of Au-16 on bilayered graphene is investigated using density functional theor...
During the last decades the specific manipulation of matter on the (sub-) nanometer scale, also know...
Adsorption of Li and Na on pristine and defective graphene and graphene oxide (GO) is studied using ...
The technological potential of functionalized graphene has recently stimulated considerable interest...
Adsorption of gold atoms and clusters (N=6) on a graphite (0001) surface with defects has been studi...
Gold is mainly present in the form of [Au(CN)2]− during the cyanide leaching process, and this...
Adsorption of Li and Na on pristine and defective graphene and graphene oxide (GO) is studied using ...
The origin of the extraordinary catalytic activity of gold nanoparticles is discussed on the basis o...
The adsorption and activation of iodo-, bromo-, and chlorobenzene over gold catalysts of different ...
The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substi...
Periodic density functional theory calculations on large supercells have been carried out to investi...
Gold’s structure-dependent catalytic activity motivates the study of reactions on a range of gold na...