The possibility to control the morphology and nucleation density of quasi-one-dimensional, single-crystalline α -Fe2 O3 nanostructures by varying the electric potential of iron surfaces exposed to reactive oxygen plasmas is demonstrated experimentally. A systematic increase in the oxygen ion flux through rf biasing of otherwise floating substrates and then an additional increase of the ion/neutral density resulted in remarkable structural transformations of straight nanoneedles into nanowires with controlled tapering/aspect ratio and also in larger nucleation densities. Multiscale numerical simulations relate the microscopic ion flux topographies to the nanostructure nucleation and morphological evolution. This approach is applicable to oth...
A simple, catalyst-free growth method for vertically aligned, highly crystalline iron oxide (alpha-F...
We report a method for converting the surfaces of bulk metal substrates (pure iron or stainless stee...
Photo-electrochemical (PEC) water splitting of hematite photoanodes suffers from low performance and...
An innovative approach to precise tailoring of surface density, shapes, and sizes of single-crystall...
This feature article introduces a deterministic approach for the rapid, single-step, direct synthesi...
Vertically aligned iron oxide nanobelt and nanowire arrays have been synthesized on a large-area sur...
To unravel the influence of the temperature and plasma species on the growth of singlecrystalline me...
It is difficult to obtain γ-Fe2O3 nanostructures by heating iron substrate in ambient conditions bec...
Vertically aligned iron oxide nanobelt and nanowire arrays have been synthesized on a large-area sur...
To unravel the influence of the temperature and plasma species on the growth of single-crystalline m...
Oxidation of iron surfaces and oxide growth mechanisms have been studied using reactive molecular dy...
By suitably pressurizing iron substrates under different conditions, the resulting alpha-Fe2O3 nanos...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
Iron oxide nanostructures, a promising alternative to carbon-based anode in lithium-ion batteries, c...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
A simple, catalyst-free growth method for vertically aligned, highly crystalline iron oxide (alpha-F...
We report a method for converting the surfaces of bulk metal substrates (pure iron or stainless stee...
Photo-electrochemical (PEC) water splitting of hematite photoanodes suffers from low performance and...
An innovative approach to precise tailoring of surface density, shapes, and sizes of single-crystall...
This feature article introduces a deterministic approach for the rapid, single-step, direct synthesi...
Vertically aligned iron oxide nanobelt and nanowire arrays have been synthesized on a large-area sur...
To unravel the influence of the temperature and plasma species on the growth of singlecrystalline me...
It is difficult to obtain γ-Fe2O3 nanostructures by heating iron substrate in ambient conditions bec...
Vertically aligned iron oxide nanobelt and nanowire arrays have been synthesized on a large-area sur...
To unravel the influence of the temperature and plasma species on the growth of single-crystalline m...
Oxidation of iron surfaces and oxide growth mechanisms have been studied using reactive molecular dy...
By suitably pressurizing iron substrates under different conditions, the resulting alpha-Fe2O3 nanos...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
Iron oxide nanostructures, a promising alternative to carbon-based anode in lithium-ion batteries, c...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
A simple, catalyst-free growth method for vertically aligned, highly crystalline iron oxide (alpha-F...
We report a method for converting the surfaces of bulk metal substrates (pure iron or stainless stee...
Photo-electrochemical (PEC) water splitting of hematite photoanodes suffers from low performance and...