Over the years, vanadium dioxide, (VO2(M1)), has been extensively utilised to fabricate thermochromic thin films with the focus on using external stimuli, such as heat, to modulate the visible through near-infrared transmittance for energy efficiency of buildings and indoor comfort. It is thus valuable to extend the study of thermochromic materials into the mid-infrared (MIR) wavelengths for applications such as smart radiative devices. On top of this, there are numerous challenges with synthesising pure VO2 (M1) thin films, as most fabrication techniques require the post-annealing of a deposited thin film to convert amorphous VO2 into a crystalline phase. Here, we present a direct method to fabricate thicker VO2(M1) thin films onto hot sil...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Thermochromic VO2 thin films have successfully been grown on SiO2-coated float glass by reactive DC ...
The thermochromic properties of vanadium dioxide (VO2) offer great advantages for energy-saving smar...
We experimentally investigate the semiconductor-to-metal transition (SMT) in vanadium dioxide thin f...
We experimentally investigate the semiconductor-to-metal transition (SMT) in vanadium dioxide thin f...
Monoclinic-phase VO2 (VO2(M)) has been extensively studied for use in energy-saving smart windows ow...
Monoclinic vanadium(IV) oxide (VO2) has been widely studied for energy-efficient glazing application...
There are significant challenges accompanied by fabricating a pure crystalline VO₂ (M1) thin film wi...
The thickness of vanadium dioxide (VO2) films is a crucial parameter for the study of their optical ...
Abstract The structural properties of VO2 thin films, grown on either LSAT or Si substrates by puls...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Thermochromic VO2 thin films have successfully been grown on SiO2-coated float glass by reactive DC ...
The thermochromic properties of vanadium dioxide (VO2) offer great advantages for energy-saving smar...
We experimentally investigate the semiconductor-to-metal transition (SMT) in vanadium dioxide thin f...
We experimentally investigate the semiconductor-to-metal transition (SMT) in vanadium dioxide thin f...
Monoclinic-phase VO2 (VO2(M)) has been extensively studied for use in energy-saving smart windows ow...
Monoclinic vanadium(IV) oxide (VO2) has been widely studied for energy-efficient glazing application...
There are significant challenges accompanied by fabricating a pure crystalline VO₂ (M1) thin film wi...
The thickness of vanadium dioxide (VO2) films is a crucial parameter for the study of their optical ...
Abstract The structural properties of VO2 thin films, grown on either LSAT or Si substrates by puls...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...
Phase-transition materials provide exciting opportunities for controlling optical properties of phot...