Ion beams can be used to permanently bend and re-align nanowires after growth. We have irradiated ZnO nanowires with energetic ions, achieving bending and alignment in different directions. Not only the bending of single nanowires is studied in detail, but also the simultaneous alignment of large ensembles of ZnO nanowires. Computer simulations reveal how the bending is initiated by ion beam induced damage. Detailed structural characterization identifies dislocations to relax stresses and make the bending and alignment permanent, even surviving annealing procedures
Metallic nanowires (NWs) are the key performers for future micro/nanodevices. The controlled manoeuv...
Metallic nanowires (NWs) are the key performers for future micro/nanodevices. The controlled manoeuv...
Nano-scale devices based on zinc oxide (ZnO) are expected to be widely used as building-blocks of fu...
Ion beams can be used to permanently bend and re-align nanowires after growth. We have irradiated Zn...
We studied the bending phenomenon of ZnO nanowires (NWs) by using three kinds of sideways physical d...
We studied the bending phenomenon of ZnO nanowires (NWs) by using three kinds of sideways physical d...
A red shift of the exciton of ZnO nanowires is efficiently produced by bending strain, as demonstrat...
Bending and bundling was observed from vertically aligned arrays of ZnO nanowires with flat (0001) t...
Despite extensive research and much progress, it remains critical and challenging to precisely grow ...
ZnO nanowires were subjected to convergent electron beam irradiation in a 300 kV transmission electr...
Nanowires can be manipulated using an ion beam via a phenomenon known as ion-induced bending (IIB). ...
To ensure reliability and facilitate the strain engineering of zinc oxide (ZnO) nanowires (NWs), it ...
Ion induced bending is a promising controlled technique for manipulating nanoscale structures. Howev...
5 pagesInternational audienceIon implantation is an interesting method to dope semiconducting materi...
Elastic engineering strain has been regarded as a low-cost and continuously variable manner for alte...
Metallic nanowires (NWs) are the key performers for future micro/nanodevices. The controlled manoeuv...
Metallic nanowires (NWs) are the key performers for future micro/nanodevices. The controlled manoeuv...
Nano-scale devices based on zinc oxide (ZnO) are expected to be widely used as building-blocks of fu...
Ion beams can be used to permanently bend and re-align nanowires after growth. We have irradiated Zn...
We studied the bending phenomenon of ZnO nanowires (NWs) by using three kinds of sideways physical d...
We studied the bending phenomenon of ZnO nanowires (NWs) by using three kinds of sideways physical d...
A red shift of the exciton of ZnO nanowires is efficiently produced by bending strain, as demonstrat...
Bending and bundling was observed from vertically aligned arrays of ZnO nanowires with flat (0001) t...
Despite extensive research and much progress, it remains critical and challenging to precisely grow ...
ZnO nanowires were subjected to convergent electron beam irradiation in a 300 kV transmission electr...
Nanowires can be manipulated using an ion beam via a phenomenon known as ion-induced bending (IIB). ...
To ensure reliability and facilitate the strain engineering of zinc oxide (ZnO) nanowires (NWs), it ...
Ion induced bending is a promising controlled technique for manipulating nanoscale structures. Howev...
5 pagesInternational audienceIon implantation is an interesting method to dope semiconducting materi...
Elastic engineering strain has been regarded as a low-cost and continuously variable manner for alte...
Metallic nanowires (NWs) are the key performers for future micro/nanodevices. The controlled manoeuv...
Metallic nanowires (NWs) are the key performers for future micro/nanodevices. The controlled manoeuv...
Nano-scale devices based on zinc oxide (ZnO) are expected to be widely used as building-blocks of fu...