Single-crystalline vanadium dioxide nanowires (VO2 NWs) have attracted significant interest due to their unique characteristics, which originate from the single-domain metal-insulator phase transition (MIT) property. However, the lack of facile technologies to produce vertical nanowire arrays (NAs) in a large area has limited the mass fabrication of VO2-based devices. Here, an antimony-assisted hydrothermal method is developed for the low-temperature production of wafer-scale vertical VO2 NAs on arbitrary substrates of glass, quartz, and silicon. Sb2O3 plays a key role in the controlled growth of pure VO2 (M1) by modulating the size, density, alignment, and MIT properties of VO2 NAs. Furthermore, the growth mechanism of vertical VO2 NAs is ...
Vanadium dioxide (VO2), as the typical phase transition material, has drawn an intensive study inclu...
Single-crystal VO2 nanowires were synthesized using atmospheric-pressure and physical vapor depositi...
Vanadium dioxide (VO2) has been intensively studied as it undergoes a metal-insulator phase transiti...
Single-crystalline vanadium dioxide (VO2) nanostructures have attracted an intense research interest...
Recently, it was discovered that single-crystalline VO2 nanostructures exhibit unique, single-domain...
In the present article, the position-controlled and catalytic-free synthesis of vanadium dioxide (VO...
VO2 nanobelts with metal-semiconductor properties were prepared through low temperature hydrothermal...
For practical applications, tuning the metal-insulator transition (MIT) behavior of high-quality van...
The purpose of this thesis is to investigate the formation mechanisms of metal oxide nanowires such ...
The monoclinic VO2(M) has promising applications in intelligent devices but its preparation still re...
Monoclinic VO2(M) in nanostructure is a prototype material for interpreting correlation effects in s...
The abrupt first-order metal-insulator phase transition in single-crystal vanadium dioxide nanowires...
The remarkable electronic and mechanical properties of nanowires have great potential for fascinatin...
The hydrothermal method is the most effective approach for the synthesis of VO2 metastable polymorph...
The simultaneous metal-insulator and structural phase transitions of vanadium dioxide (VO2) makes th...
Vanadium dioxide (VO2), as the typical phase transition material, has drawn an intensive study inclu...
Single-crystal VO2 nanowires were synthesized using atmospheric-pressure and physical vapor depositi...
Vanadium dioxide (VO2) has been intensively studied as it undergoes a metal-insulator phase transiti...
Single-crystalline vanadium dioxide (VO2) nanostructures have attracted an intense research interest...
Recently, it was discovered that single-crystalline VO2 nanostructures exhibit unique, single-domain...
In the present article, the position-controlled and catalytic-free synthesis of vanadium dioxide (VO...
VO2 nanobelts with metal-semiconductor properties were prepared through low temperature hydrothermal...
For practical applications, tuning the metal-insulator transition (MIT) behavior of high-quality van...
The purpose of this thesis is to investigate the formation mechanisms of metal oxide nanowires such ...
The monoclinic VO2(M) has promising applications in intelligent devices but its preparation still re...
Monoclinic VO2(M) in nanostructure is a prototype material for interpreting correlation effects in s...
The abrupt first-order metal-insulator phase transition in single-crystal vanadium dioxide nanowires...
The remarkable electronic and mechanical properties of nanowires have great potential for fascinatin...
The hydrothermal method is the most effective approach for the synthesis of VO2 metastable polymorph...
The simultaneous metal-insulator and structural phase transitions of vanadium dioxide (VO2) makes th...
Vanadium dioxide (VO2), as the typical phase transition material, has drawn an intensive study inclu...
Single-crystal VO2 nanowires were synthesized using atmospheric-pressure and physical vapor depositi...
Vanadium dioxide (VO2) has been intensively studied as it undergoes a metal-insulator phase transiti...