Surface segregation, restructuring, and sintering phenomena in size-selected copper-nickel nanoparticles (NPs) supported on silicon dioxide substrates were systematically investigated as a function of temperature, chemical state, and reactive gas environment. Using near-ambient pressure (NAP-XPS) and ultrahigh vacuum X-ray photoelectron spectroscopy (XPS), we showed that nickel tends to segregate to the surface of the NPs at elevated temperatures in oxygen- or hydrogen-containing atmospheres. It was found that the NP pretreatment, gaseous environment, and oxide formation free energy are the main driving forces of the restructuring and segregation trends observed, overshadowing the role of the surface free energy. The depth profile of the el...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
The chemical and morphological stability of size- and shape-selected octahedral PtNi nanoparticles (...
International audienceNiO and NiO-CuO polycrystalline rodlike nanoparticles were confined and stabil...
Surface segregation, restructuring and sintering phenomena in size-selected copper-nickel nanopartic...
Surface segregation, restructuring and sintering phenomena in size-selected copper-nickel nanopartic...
Surface segregation, restructuring, and sintering phenomena in size-selected copper–nickel nanoparti...
Surface segregation and restructuring in size-selected CuNi nanoparticles were investigated via near...
Bimetallic nanoparticles (∼11 nm diameter) of CuNi and CuCo were prepared by a new synthetic route a...
Surface segregation and restructuring in size-selected CuNi nanoparticles were investigated via near...
A study of the morphological and chemical stability of shape-selected octahedral Pt0.5Ni0.5 nanopart...
A study of the morphological and chemical stability of shape-selected octahedral Pt0.5Ni0.5 nanopart...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
Bimetallic CuNi nanoparticles of various nominal compositions (1:3, 1:1, 3:1) supported on ZrO2weree...
Metal nanoparticles with a precisely controlled particle size distribution are ideal model catalysts...
Abstract Bimetallic nanoparticle (NP) catalysts are widely used in many heterogeneous gas‐based reac...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
The chemical and morphological stability of size- and shape-selected octahedral PtNi nanoparticles (...
International audienceNiO and NiO-CuO polycrystalline rodlike nanoparticles were confined and stabil...
Surface segregation, restructuring and sintering phenomena in size-selected copper-nickel nanopartic...
Surface segregation, restructuring and sintering phenomena in size-selected copper-nickel nanopartic...
Surface segregation, restructuring, and sintering phenomena in size-selected copper–nickel nanoparti...
Surface segregation and restructuring in size-selected CuNi nanoparticles were investigated via near...
Bimetallic nanoparticles (∼11 nm diameter) of CuNi and CuCo were prepared by a new synthetic route a...
Surface segregation and restructuring in size-selected CuNi nanoparticles were investigated via near...
A study of the morphological and chemical stability of shape-selected octahedral Pt0.5Ni0.5 nanopart...
A study of the morphological and chemical stability of shape-selected octahedral Pt0.5Ni0.5 nanopart...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
Bimetallic CuNi nanoparticles of various nominal compositions (1:3, 1:1, 3:1) supported on ZrO2weree...
Metal nanoparticles with a precisely controlled particle size distribution are ideal model catalysts...
Abstract Bimetallic nanoparticle (NP) catalysts are widely used in many heterogeneous gas‐based reac...
Solid surfaces generally respond sensitively to their environment. Gas phase or liquid phase species...
The chemical and morphological stability of size- and shape-selected octahedral PtNi nanoparticles (...
International audienceNiO and NiO-CuO polycrystalline rodlike nanoparticles were confined and stabil...