Generally, the length of the oxide nanowires grown by vapor phase transport is limited by the degradation of the source materials. Furthermore, the source material is used once for the nanowires growth. By exploiting the Si-Zn phase diagram, we have developed a simple methodology for the non-catalytic growth of ultralong ZnO nanowires in large area with controllable aspect ratio and branched structures. The insolubility of Zn in Si and the use of a Si cap on the Zn source to prevent local source oxidation of Zn (i.e. prevents the degradation of the source) are the keys to grow longer nanowires without limitations. It has been shown that the aspect ratio can be controlled by thermodynamically (temperature) and more importantly by kinetically...
Single crystalline zinc oxide (ZnO) nanowires have been grown on Si (100) substrates by a vapor-liqu...
We demonstrate a simple and effective approach to control the diameter of ultrathin ZnO nanowires wi...
We report on the growth of ZnO nanowire (NW) arrays on selected areas by using a vapor phase deposit...
Generally, the length of the oxide nanowires grown by vapor phase transport is limited by the degrad...
International audienceHydrothermal synthesis of ZnO nanowires (NWs) with tailored dimensions, notabl...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...
[[abstract]]We report the growth of ultralong ZnO nanowires on silicon (100) substrates via the gold...
A novel synthesis and growth method achieving vertically aligned zinc oxide (ZnO) nanowires on a sil...
Vertically well-aligned ZnO nanowires with a high density were successfully grown on Si (100) substr...
The growth of vertically aligned zinc oxide nanowires (ZnO NW) using a simple vapor deposition metho...
ZnO is a unique material with numerous applications. There has been great interest in the synthesis ...
In vapor-liquid-solid (VLS) growth, it is generally believed that nanowires would grow as long as th...
A simple approach is demonstrated for growing large scale, nearly vertically aligned ZnO nanowire ar...
Vertically grown ZnO nanowires are synthesized on an indium tin oxide (ITO) substrate via a vapor tr...
ZnO nanowires were grown on silicon substrate by metal-organic chemical vapor deposition (MOCVD) wit...
Single crystalline zinc oxide (ZnO) nanowires have been grown on Si (100) substrates by a vapor-liqu...
We demonstrate a simple and effective approach to control the diameter of ultrathin ZnO nanowires wi...
We report on the growth of ZnO nanowire (NW) arrays on selected areas by using a vapor phase deposit...
Generally, the length of the oxide nanowires grown by vapor phase transport is limited by the degrad...
International audienceHydrothermal synthesis of ZnO nanowires (NWs) with tailored dimensions, notabl...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...
[[abstract]]We report the growth of ultralong ZnO nanowires on silicon (100) substrates via the gold...
A novel synthesis and growth method achieving vertically aligned zinc oxide (ZnO) nanowires on a sil...
Vertically well-aligned ZnO nanowires with a high density were successfully grown on Si (100) substr...
The growth of vertically aligned zinc oxide nanowires (ZnO NW) using a simple vapor deposition metho...
ZnO is a unique material with numerous applications. There has been great interest in the synthesis ...
In vapor-liquid-solid (VLS) growth, it is generally believed that nanowires would grow as long as th...
A simple approach is demonstrated for growing large scale, nearly vertically aligned ZnO nanowire ar...
Vertically grown ZnO nanowires are synthesized on an indium tin oxide (ITO) substrate via a vapor tr...
ZnO nanowires were grown on silicon substrate by metal-organic chemical vapor deposition (MOCVD) wit...
Single crystalline zinc oxide (ZnO) nanowires have been grown on Si (100) substrates by a vapor-liqu...
We demonstrate a simple and effective approach to control the diameter of ultrathin ZnO nanowires wi...
We report on the growth of ZnO nanowire (NW) arrays on selected areas by using a vapor phase deposit...