Experimental activity on core@shell, metal@oxide, and oxide nanoparticles (NPs) grown with physical synthesis, and more specifically by low pressure gas aggregation sources (LPGAS) is reviewed, through a selection of examples encompassing some potential applications in nanotechnology. After an introduction to the applications of NPs, a brief description of the main characteristics of the growth process of clusters and NPs in LPGAS is given. Thereafter, some relevant case studies are reported: Formation of native oxide shells around the metal cores in core@shell NPs. Experimental efforts to obtain magnetic stabilization in magnetic core@shell NPs by controlling their structure and morphology. Recent advancements in NP source design and...
Chemical reducing and capping reagents are largely used in synthesizing metal oxide nanoparticles wh...
Nanomaterials show a significant difference in chemical, mechanical, electronic, magnetic and optica...
Facile routes to metal oxide and mixed metal oxide nanomaterials, with control over the resulting pa...
Experimental activity on core@shell, metal@oxide, and oxide nanoparticles (NPs) grown with physical ...
Metal oxide nanoparticles can enable a wide variety of impactful applications due to their structure...
Metal oxide nanoparticles (MONPs) are the most important class of nanoparticles regarding the volum...
1513-1528Metal oxide nanoparticles (MONPs) are the most important class of nanoparticles regarding t...
Sankar Nair from the School of Chemical and Biomolecular Engineering presented a lecture at the Nano...
Development of synthesis protocols for realising nanomaterials over a range of sizes, shapes,and che...
In this paper, an overview of the synthesis, chemistry and applications of nanosystems carried out i...
A bottom-up approach to produce a long-range ordered superlattice of monodisperse and isomorphic met...
A diverse set of systems that interact with nitric oxide (NO) is important because of its adverse ro...
A series of oxide materials were modified with different nanoparticles (NPs). Novel cobalt@H4Nb6O17 ...
One of the gas-phased methods of the levitational gas condensation (LGC) process was developed to ob...
Thanks to recent advances in the synthesis of high-quality inorganic nanoparticles, more and more ty...
Chemical reducing and capping reagents are largely used in synthesizing metal oxide nanoparticles wh...
Nanomaterials show a significant difference in chemical, mechanical, electronic, magnetic and optica...
Facile routes to metal oxide and mixed metal oxide nanomaterials, with control over the resulting pa...
Experimental activity on core@shell, metal@oxide, and oxide nanoparticles (NPs) grown with physical ...
Metal oxide nanoparticles can enable a wide variety of impactful applications due to their structure...
Metal oxide nanoparticles (MONPs) are the most important class of nanoparticles regarding the volum...
1513-1528Metal oxide nanoparticles (MONPs) are the most important class of nanoparticles regarding t...
Sankar Nair from the School of Chemical and Biomolecular Engineering presented a lecture at the Nano...
Development of synthesis protocols for realising nanomaterials over a range of sizes, shapes,and che...
In this paper, an overview of the synthesis, chemistry and applications of nanosystems carried out i...
A bottom-up approach to produce a long-range ordered superlattice of monodisperse and isomorphic met...
A diverse set of systems that interact with nitric oxide (NO) is important because of its adverse ro...
A series of oxide materials were modified with different nanoparticles (NPs). Novel cobalt@H4Nb6O17 ...
One of the gas-phased methods of the levitational gas condensation (LGC) process was developed to ob...
Thanks to recent advances in the synthesis of high-quality inorganic nanoparticles, more and more ty...
Chemical reducing and capping reagents are largely used in synthesizing metal oxide nanoparticles wh...
Nanomaterials show a significant difference in chemical, mechanical, electronic, magnetic and optica...
Facile routes to metal oxide and mixed metal oxide nanomaterials, with control over the resulting pa...