Ni-oxide-based thin films were produced by reactive direct-current magnetron sputtering and were characterized by X-ray diffraction and Rutherford backscattering spectroscopy. Intercalation of Li+ ions was accomplished by cyclic voltammetry (CV) in an electrolyte of LiClO4 in propylene carbonate, and electrochromism was documented by spectrophotometry. The charge density exchange, and hence the optical modulation span, decayed gradually upon repeated cycling. This phenomenon was accurately described by an empirical power law, which was valid for at least 10(4) cycles when the applied voltage was limited to 4.1V vs Li/Li+. Our results allow lifetime assessments for one of the essential components in an electrochromic device such as a "smart ...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
The effect of sputtering power (=60 W–180 W) on the electrochromic properties of nickel oxide films ...
Ni oxide thin films are widely used in electrochromic (EC) devices with variable throughput of visib...
Ni oxide thin films are widely used in electrochromic (EC) devices with variable throughput of visib...
Films of electrochromic Ni oxide, with thickness in the ∼100–1000-nm range, were prepared by reactiv...
Films of electrochromic Ni oxide, with thickness in the ∼100–1000-nm range, were prepared by reactiv...
Films of electrochromic Ni oxide, with thickness in the ∼100–1000-nm range, were prepared by reactiv...
Films of electrochromic Ni oxide, with thickness in the ∼100–1000-nm range, were prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Porous Ni oxide thin films were deposited on unheated ITO/glass substrates by sputtering in argon-ox...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
The effect of sputtering power (=60 W–180 W) on the electrochromic properties of nickel oxide films ...
Ni oxide thin films are widely used in electrochromic (EC) devices with variable throughput of visib...
Ni oxide thin films are widely used in electrochromic (EC) devices with variable throughput of visib...
Films of electrochromic Ni oxide, with thickness in the ∼100–1000-nm range, were prepared by reactiv...
Films of electrochromic Ni oxide, with thickness in the ∼100–1000-nm range, were prepared by reactiv...
Films of electrochromic Ni oxide, with thickness in the ∼100–1000-nm range, were prepared by reactiv...
Films of electrochromic Ni oxide, with thickness in the ∼100–1000-nm range, were prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Porous Ni oxide thin films were deposited on unheated ITO/glass substrates by sputtering in argon-ox...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
The effect of sputtering power (=60 W–180 W) on the electrochromic properties of nickel oxide films ...