Electrochromic (EC) materials are able to change their optical properties, reversibly and persistently, by the application of an electrical voltage. These materials can be integrated in multilayer devices capable of modulating the optical transmittance between widely separated extrema. We first review the recent literature on inorganic EC materials and point out that today's research is focused on tungsten oxide ( colouring under charge insertion) and nickel oxide ( colouring under charge extraction). The properties of thin films of these materials are then discussed in detail with foci on recent results from two comprehensive investigations in the authors' laboratory. A logical exposition is obtained by covering, in sequence, structural fe...
Thin films of Ni oxide, which is a promising anodic electrochromic material, were deposited by react...
An electrochromic material changes its optical properties in the visible part of the spectrum under ...
AbstractElectrochromic ‘smart windows’, capable of dynamically adjusting light transmittance, glare ...
Electrochromic (EC) materials are able to change their optical properties, reversibly and persistent...
Electrochromic (EC) materials are able to change their optical properties, reversibly and persistent...
Electrochromic (EC) materials are able to change their optical properties, reversibly and persistent...
Electrochromic (EC) materials are able to change their optical properties, reversibly and persistent...
Electrochromic (EC) materials can adjust their optical properties, reversibly, by means of an extern...
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...
Electrochromic thin films can effectively regulate the visible and infrared light passing through a ...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
Electrochromic devices such as "smart windows" for energy efficient windows must be durable enough f...
AbstractElectrochromic ‘smart windows’, capable of dynamically adjusting light transmittance, glare ...
Electrochromic properties of sputter-deposited nickel-based oxide films have been studied with a two...
Thin films of Ni oxide, which is a promising anodic electrochromic material, were deposited by react...
An electrochromic material changes its optical properties in the visible part of the spectrum under ...
AbstractElectrochromic ‘smart windows’, capable of dynamically adjusting light transmittance, glare ...
Electrochromic (EC) materials are able to change their optical properties, reversibly and persistent...
Electrochromic (EC) materials are able to change their optical properties, reversibly and persistent...
Electrochromic (EC) materials are able to change their optical properties, reversibly and persistent...
Electrochromic (EC) materials are able to change their optical properties, reversibly and persistent...
Electrochromic (EC) materials can adjust their optical properties, reversibly, by means of an extern...
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...
Electrochromic thin films can effectively regulate the visible and infrared light passing through a ...
Anodic electrochromic (EC) oxides are of major interest as counter electrodes for smart window appli...
Electrochromic devices such as "smart windows" for energy efficient windows must be durable enough f...
AbstractElectrochromic ‘smart windows’, capable of dynamically adjusting light transmittance, glare ...
Electrochromic properties of sputter-deposited nickel-based oxide films have been studied with a two...
Thin films of Ni oxide, which is a promising anodic electrochromic material, were deposited by react...
An electrochromic material changes its optical properties in the visible part of the spectrum under ...
AbstractElectrochromic ‘smart windows’, capable of dynamically adjusting light transmittance, glare ...