This study demonstrates a novel technique for the fabrication of ordered arrays of Au rich nanoparticles on a Si substrate. Si substrates, with their native oxides intact, are pre-patterned using nanoindentation to create regions on the surface that readily alloy at higher temperatures with a thin thermally evaporated Au layer. Larger Au rich particles are observed to form at the indentation sites after high temperature annealing in an inert atmosphere. After mechanical wiping, the Au rich particles lying within the indentation sites remain while almost all the particles on the native oxide surface are readily removed. Using PECVD techniques, multi-prong Si nanowires are shown to grow from the remaining arrays of Au rich particles
Silicon oxide nanowires (SiO(x)NWs) was decorated with 3- to 6-nm-sized Au nanoparticles by direct d...
[[abstract]]The growth of high-density Si nanorings has been achieved on ultrathin Au films on silic...
An investigation of the thermal stability of size-selected Au nanoparticles (NPs) synthesized <i>via...
Ordered arrays of gold-rich particles, with diameters ranging from 50 nm to 180 nm, have been formed...
Ordered arrays of gold-rich particles, with diameters ranging from 50 nm to 180 nm, have been formed...
This work reports on the structural characterization of Au nanocrystals directly prepared on the sur...
*S Supporting Information ABSTRACT: We report the behavior of Au nanoparticles anchored onto a Si(11...
*S Supporting Information ABSTRACT: We report the behavior of Au nanoparticles anchored onto a Si(11...
We report the behavior of Au nanoparticles anchored onto a Si(111) substrate and the evolution of th...
We report the behavior of Au nanoparticles anchored onto a Si(111) substrate and the evolution of th...
We report the behavior of Au nanoparticles anchored onto a Si(111) substrate and the evolution of th...
Combining the self-organized growth of nanometer size islands with the use of a pre-patterned substr...
Coherent gold nanoislands were prepared directly on (100)-oriented Si substrates by a physical metho...
[[abstract]]The growth mechanism of oriented Au nanowires fabricated by immersion plating was invest...
Implantation, annealing, and oxidation processes have been used to form Au nanoparticles with a narr...
Silicon oxide nanowires (SiO(x)NWs) was decorated with 3- to 6-nm-sized Au nanoparticles by direct d...
[[abstract]]The growth of high-density Si nanorings has been achieved on ultrathin Au films on silic...
An investigation of the thermal stability of size-selected Au nanoparticles (NPs) synthesized <i>via...
Ordered arrays of gold-rich particles, with diameters ranging from 50 nm to 180 nm, have been formed...
Ordered arrays of gold-rich particles, with diameters ranging from 50 nm to 180 nm, have been formed...
This work reports on the structural characterization of Au nanocrystals directly prepared on the sur...
*S Supporting Information ABSTRACT: We report the behavior of Au nanoparticles anchored onto a Si(11...
*S Supporting Information ABSTRACT: We report the behavior of Au nanoparticles anchored onto a Si(11...
We report the behavior of Au nanoparticles anchored onto a Si(111) substrate and the evolution of th...
We report the behavior of Au nanoparticles anchored onto a Si(111) substrate and the evolution of th...
We report the behavior of Au nanoparticles anchored onto a Si(111) substrate and the evolution of th...
Combining the self-organized growth of nanometer size islands with the use of a pre-patterned substr...
Coherent gold nanoislands were prepared directly on (100)-oriented Si substrates by a physical metho...
[[abstract]]The growth mechanism of oriented Au nanowires fabricated by immersion plating was invest...
Implantation, annealing, and oxidation processes have been used to form Au nanoparticles with a narr...
Silicon oxide nanowires (SiO(x)NWs) was decorated with 3- to 6-nm-sized Au nanoparticles by direct d...
[[abstract]]The growth of high-density Si nanorings has been achieved on ultrathin Au films on silic...
An investigation of the thermal stability of size-selected Au nanoparticles (NPs) synthesized <i>via...