Metal nanoparticles that comprise a few hundred to several thousand atoms have many applications in areas such as photonics, sensing, medicine and catalysis. Colloidal methods have proven particularly suitable for producing small nanoparticles with controlled morphologies and excellent catalytic properties. Ligands are necessary to stabilize nanoparticles during synthesis, but once the particles have been deposited on a substrate the presence of the ligands is detrimental for catalytic activity. Previous methods for ligand removal have typically involved thermal and oxidative treatments, which can affect the size or morphology of the particles, in turn altering their catalytic activity. Here, we report a procedure to effectively remove the ...
The design of nanoparticles is critical for their efficient use in many applications ranging from bi...
A nanoparticle with well-defined surfaces, prepared through colloidal chemistry, enables it to be st...
Nanoparticles have properties that can be fine-tuned by their size as well as shape. Hence, there i...
Metal nanoparticles that comprise a few hundred to several thousand atoms have many applications in ...
The synthesis and characterization methods of metal nanoparticles (NPs) have advanced greatly in the...
Size-dependent properties of surface-confined inorganic nanostructures are of interest for applicati...
Ruby red colloids of gold have been used for thousands of years and in the past have attracted much ...
Colloids with controlled dimensions, morphology and composition can be used to obtain supported meta...
The use of stabilizers is an essential part of colloidal catalyst preparation; however their impact ...
Colloidal syntheses of nanoparticles (NPs) are one of the preferred approaches to prepare precious m...
Industrial heterogeneous catalysts, composed of metal nanoparticles, have been widely utilized owing...
The use of stabilizers is an essential part of colloidal catalyst preparation, however their impact ...
The femtosecond laser ablation of a gold target in aqueous solutions has been used to produce colloi...
Metal nanoparticles (NPs) from colloidal synthesis are advantageous in fundamental catalysis researc...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
The design of nanoparticles is critical for their efficient use in many applications ranging from bi...
A nanoparticle with well-defined surfaces, prepared through colloidal chemistry, enables it to be st...
Nanoparticles have properties that can be fine-tuned by their size as well as shape. Hence, there i...
Metal nanoparticles that comprise a few hundred to several thousand atoms have many applications in ...
The synthesis and characterization methods of metal nanoparticles (NPs) have advanced greatly in the...
Size-dependent properties of surface-confined inorganic nanostructures are of interest for applicati...
Ruby red colloids of gold have been used for thousands of years and in the past have attracted much ...
Colloids with controlled dimensions, morphology and composition can be used to obtain supported meta...
The use of stabilizers is an essential part of colloidal catalyst preparation; however their impact ...
Colloidal syntheses of nanoparticles (NPs) are one of the preferred approaches to prepare precious m...
Industrial heterogeneous catalysts, composed of metal nanoparticles, have been widely utilized owing...
The use of stabilizers is an essential part of colloidal catalyst preparation, however their impact ...
The femtosecond laser ablation of a gold target in aqueous solutions has been used to produce colloi...
Metal nanoparticles (NPs) from colloidal synthesis are advantageous in fundamental catalysis researc...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
The design of nanoparticles is critical for their efficient use in many applications ranging from bi...
A nanoparticle with well-defined surfaces, prepared through colloidal chemistry, enables it to be st...
Nanoparticles have properties that can be fine-tuned by their size as well as shape. Hence, there i...