Flexible electrochromic reflectance device based on tungsten oxide for infrared emissivity control

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作者
Bessière, A. [1 ,2 ]
Marcel, C. [3 ]
Morcrette, M. [3 ]
Tarascon, J.-M. [3 ]
Lucas, V. [2 ]
Viana, B. [1 ]
Baffier, N. [1 ]
机构
[1] [1,Bessière, A.
[2] Marcel, C.
[3] Morcrette, M.
[4] Tarascon, J.-M.
[5] Lucas, V.
[6] Viana, B.
[7] Baffier, N.
来源
Bessière, A. | 1600年 / American Institute of Physics Inc.卷 / 91期
关键词
Electrochromism - Electromagnetic wave emission - Lithium-ion batteries - Tungsten compounds - Oxide films - Laminating - Lithium - Electrolytes - Oxides;
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摘要
Instead of the usual sputtered anhydrous tungsten oxide thin films, a powder of monohydrated tungsten oxide (WO3.H2O) was used for the making of an electrochromic infrared emissivity modulator. The WO 3.H2O powder was embedded in a porous plastic matrix before being laminated with other appropriate layers of the battery-like device, leading then to a complete flexible emissivity modulator. The widely open structure of the hydrated tungsten oxide makes lithium intercalation easier, which is particularly suitable for the realization of plasticized devices. Compared to a classical battery assembly, a porous plastic graphite layer laminated with a conductive grid was sandwiched between the WO 3.H2O and the electrolyte layers. Such an original device allowed both a perfect uniformity in current collection and a sufficient porosity for the liquid electrolyte displacement. The complete device demonstrated a satisfying electrochemical behavior under 1 mV/s potential sweeps, allowing the insertion of a large amount of lithium ions into the WO3.H2O structure. Hemispherical reflectance measurements were carried out both over the VIS/NIR (0.4-2.5 μm) and the mid-infrared (2.5-25 μm) spectral ranges. Reflectance over the 2.5-25 μm spectral range was found to switch from 2% to 32% upon intercalation of 0.65 Li per tungsten. This value is comparable to previous literature results obtained for rigid devices. © 2002 American Institute of Physics.
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