ACS AuthorChoice - This is an open access article published under an ACS AuthorChoice License.The successful application of focused electron (and ion) beam induced deposition techniques for the growth of nanowires on flexible and transparent polycarbonate films is reported here. After minimization of charging effects in the substrate, sub-100 nm-wide Pt, W, and Co nanowires have been grown and their electrical conduction is similar compared to the use of standard Si-based substrates. Experiments where the substrate is bent in a controlled way indicate that the electrical conduction is stable up to high bending angles, >50°, for low-resistivity Pt nanowires grown by the ion beam. On the other hand, the resistance of Pt nanowires grown by the...
An ultra-fast method to directly grow metallic micro- and nano-structures is introduced. It relies o...
Focused electron beam induced deposition (FEBID) is a leading nanolithography technique in terms of ...
This work constitutes a detailed study of electrical and magnetic properties in nanometric materials...
Silver nanowire (AgNW) networks have attracted particular attention as transparent conductive films ...
Silver nanowire (AgNW) networks have attracted particular attention as transparent conductive films ...
We present morphological and electrical characterizations of thin and narrow resistors obtained by f...
Conductive nanowires were deposited by a focused gallium ion beam using W(CO)6 and (CH3)3CH3C5H4Pt a...
We present a method to reduce the size and improve the crystal quality of freestanding nanowires gro...
We present a study of the transport properties of Pt-C nanowires created by focused-ion-beam (FIB)-i...
Silver nanowire (AgNW) networks have attracted particular attention as transparent conductive films ...
Patterning nanostructures on flexible substrates plays a key role in the emerging flexible electroni...
One of the main features of any lithography technique is its resolution, generally maximized for a s...
In the last 15 years, nanomaterials (nanowires, nanotubes, nanobelts,...) have emerged as potential ...
This thesis is devoted to the creation and study of micro and nanostructures using top-down methods...
Background: The use of a focused ion beam to decompose a precursor gas and produce a metallic deposi...
An ultra-fast method to directly grow metallic micro- and nano-structures is introduced. It relies o...
Focused electron beam induced deposition (FEBID) is a leading nanolithography technique in terms of ...
This work constitutes a detailed study of electrical and magnetic properties in nanometric materials...
Silver nanowire (AgNW) networks have attracted particular attention as transparent conductive films ...
Silver nanowire (AgNW) networks have attracted particular attention as transparent conductive films ...
We present morphological and electrical characterizations of thin and narrow resistors obtained by f...
Conductive nanowires were deposited by a focused gallium ion beam using W(CO)6 and (CH3)3CH3C5H4Pt a...
We present a method to reduce the size and improve the crystal quality of freestanding nanowires gro...
We present a study of the transport properties of Pt-C nanowires created by focused-ion-beam (FIB)-i...
Silver nanowire (AgNW) networks have attracted particular attention as transparent conductive films ...
Patterning nanostructures on flexible substrates plays a key role in the emerging flexible electroni...
One of the main features of any lithography technique is its resolution, generally maximized for a s...
In the last 15 years, nanomaterials (nanowires, nanotubes, nanobelts,...) have emerged as potential ...
This thesis is devoted to the creation and study of micro and nanostructures using top-down methods...
Background: The use of a focused ion beam to decompose a precursor gas and produce a metallic deposi...
An ultra-fast method to directly grow metallic micro- and nano-structures is introduced. It relies o...
Focused electron beam induced deposition (FEBID) is a leading nanolithography technique in terms of ...
This work constitutes a detailed study of electrical and magnetic properties in nanometric materials...