We report the use of gold nanoparticle surface chemistry as a tool for site-selective noble metal deposition onto colloidal gold nanoparticle substrates. Specifically, we demonstrate that partial passivation of the gold nanoparticle surface using thiolated ligands can induce a transition from linear palladium island deposition to growth of palladium selectively at plasmonic hotspots on the edges or vertices of the underlying particle substrate. Further, we demonstrate the broader applicability of this approach with respect to substrate morphology (e.g., prismatic and rod-shaped nanoparticles), secondary metal (e.g., palladium, gold, and platinum), and surface ligand (e.g., surfactant molecules and <i>n</i>-alkanethiols). Taken together, the...
Nanoplasmonics is a growing field of optical condensed matter science dedicated to optical phenomena...
Engineering atomic structures at metal surfaces represents an important step in the development of n...
Atomic layer deposition (ALD) of noble metals has attracted much attention in recent years for the d...
Hybrid nanoparticles have been widely studied because of their ability to synergistically combine or...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
Understanding the chemical mechanisms underlying multimetallic nanoparticle nucleation and growth is...
Surface and interface control is fundamentally important for crystal growth engineering, catalysis, ...
Noble metal nanostructures can efficiently harvest electromagnetic radiation, which, in turn, is use...
Shape and size control as well as the control of the assembly of nanostructures are current challeng...
We present a simple procedure to selectively deposit gold nanoparticles using pure water. It enables...
Photocatalytic assembly of heterometallic nanoarchitectures via plasmonic hot electrons is demonstra...
The roles of silver ions and halides (chloride, bromide, and iodide) in the seed-mediated synthesis ...
The controlled growth of surface-supported metal nanoparticles (NPs) is essential to a broad range o...
Surface supported, low dimensional gold nanostructures are of interest for plasmonic applications. L...
Ruby red colloids of gold have been used for thousands of years and in the past have attracted much ...
Nanoplasmonics is a growing field of optical condensed matter science dedicated to optical phenomena...
Engineering atomic structures at metal surfaces represents an important step in the development of n...
Atomic layer deposition (ALD) of noble metals has attracted much attention in recent years for the d...
Hybrid nanoparticles have been widely studied because of their ability to synergistically combine or...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
Understanding the chemical mechanisms underlying multimetallic nanoparticle nucleation and growth is...
Surface and interface control is fundamentally important for crystal growth engineering, catalysis, ...
Noble metal nanostructures can efficiently harvest electromagnetic radiation, which, in turn, is use...
Shape and size control as well as the control of the assembly of nanostructures are current challeng...
We present a simple procedure to selectively deposit gold nanoparticles using pure water. It enables...
Photocatalytic assembly of heterometallic nanoarchitectures via plasmonic hot electrons is demonstra...
The roles of silver ions and halides (chloride, bromide, and iodide) in the seed-mediated synthesis ...
The controlled growth of surface-supported metal nanoparticles (NPs) is essential to a broad range o...
Surface supported, low dimensional gold nanostructures are of interest for plasmonic applications. L...
Ruby red colloids of gold have been used for thousands of years and in the past have attracted much ...
Nanoplasmonics is a growing field of optical condensed matter science dedicated to optical phenomena...
Engineering atomic structures at metal surfaces represents an important step in the development of n...
Atomic layer deposition (ALD) of noble metals has attracted much attention in recent years for the d...