The oxidation of nickel particles was studied in situ in an environmental transmission electron microscope in 3.2 mbar of O2 between ambient temperature and 600 °C. Several different transmission electron microscopy imaging techniques, electron diffraction and electron energy-loss spectroscopy were used to study the evolution of the microstructure and the local chemical composition of the particles during oxidation. Our results suggest that built-in field effects control the initial stages of oxidation, with randomly oriented NiO crystallites and internal voids then forming as a result of outward diffusion of Ni2+ along NiO grain boundaries, self-diffusion of Ni2+ ions and vacancies, growth of NiO grains and nucleation of voids at Ni/NiO in...
Isothermal oxidation and cyclic oxidation behavior of pure and yttrium-implanted nickel was studied ...
A multiscale study of the high temperature oxidation effects on high purity polycrystalline nickel b...
The formation of oxide films on pure Ni surfaces by low energy oxygen ion-beam bombardment at room t...
Environmental transmission electron microscopy was used to characterize in situ the reduction and ox...
International audienceThe effect of impurities on the oxidation mechanism of nickel and on the mecha...
The redox behaviors of nanoscale metal and ceramic materials are affected by various parameters and ...
Oxidation and reduction cycles are used in the regeneration of nanoparticle catalysts that have deac...
In situ reduction of nickel oxide (NiO) particles is performed under 1.3mbar of hydrogen gas (H2) in...
Environmental transmission electron microscopy was used to characterize in situ the reduction and ox...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...
The structural properties of nickel nanoparticles which are prepared by means of DC sputtering in a...
Low-energy and photoemission electron microscopy enables the determination of facet planes of polycr...
The results of a combined x-ray photoelectron spectroscopy (XPS) and high resolution transmission el...
International audienceThe differences in the nickel oxidation mechanism and the microstructure of th...
A small addition of elements with a high affinity to oxygen can have a profound effect on the high t...
Isothermal oxidation and cyclic oxidation behavior of pure and yttrium-implanted nickel was studied ...
A multiscale study of the high temperature oxidation effects on high purity polycrystalline nickel b...
The formation of oxide films on pure Ni surfaces by low energy oxygen ion-beam bombardment at room t...
Environmental transmission electron microscopy was used to characterize in situ the reduction and ox...
International audienceThe effect of impurities on the oxidation mechanism of nickel and on the mecha...
The redox behaviors of nanoscale metal and ceramic materials are affected by various parameters and ...
Oxidation and reduction cycles are used in the regeneration of nanoparticle catalysts that have deac...
In situ reduction of nickel oxide (NiO) particles is performed under 1.3mbar of hydrogen gas (H2) in...
Environmental transmission electron microscopy was used to characterize in situ the reduction and ox...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...
The structural properties of nickel nanoparticles which are prepared by means of DC sputtering in a...
Low-energy and photoemission electron microscopy enables the determination of facet planes of polycr...
The results of a combined x-ray photoelectron spectroscopy (XPS) and high resolution transmission el...
International audienceThe differences in the nickel oxidation mechanism and the microstructure of th...
A small addition of elements with a high affinity to oxygen can have a profound effect on the high t...
Isothermal oxidation and cyclic oxidation behavior of pure and yttrium-implanted nickel was studied ...
A multiscale study of the high temperature oxidation effects on high purity polycrystalline nickel b...
The formation of oxide films on pure Ni surfaces by low energy oxygen ion-beam bombardment at room t...