Solar and thermal dual-band electrochromic windows for energy-efficient buildings.
basic_science · Level V
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- Record sourced from PubMed, PMID 42481474.
- Also identified by DOI 10.1038/s41467-026-75753-8.
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Abstract
Windows mediate over 60% of solar gain (0.38‒2.5 μm) in summer and more than 40% of radiative loss (2.5‒20 μm) in winter. Traditional electrochromic (EC) smart windows can manipulate heat only in visible and near-infrared wavelength regions by adjustable transmission, while neglecting the thermal radiation of long-wave infrared emissivity (ɛ<sub>LWIR</sub>). Here, we report a solar and thermal dual-band EC (STDEC) window that independently modulates solar transmission (∆T<sub>sol</sub> = 52.2%) and ɛ<sub>LWIR</sub> (∆ɛ<sub>LWIR</sub> = 0.87) by integrating a dynamic copper-bismuth (Cu-Bi)-based reversible metal electrodeposition system with a spatial rotation architecture. Consequently, the STDEC window lowers summer daytime temperatures by up to 22.2 °C and raises winter nighttime temperatures by up to 1.5 °C versus normal glass in outdoor thermal tests. Furthermore, building energy simulations suggest that our window demonstrates higher year-round energy savings and thus global carbon dioxide (CO<sub>2</sub>) emission reduction. This STDEC window provides a sustainable pathway towards energy-efficient buildings.