2022
DOI: 10.1002/adom.202200106
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Li+/Al3+ Composite Solid Electrolyte Based Electro‐Thermal Dual Responsive Devices with Optimized Optical Contrast and Cycle Durability

Abstract: The limited optical contrast and band adjustment range are the main factors that restrict chromic materials. In this study, Li+/Al3+ composite solid electrolyte is incorporated between VO2 and WO3 chromic functional layers to construct a new type of VO2 based electrothermal dual responsive devices. The dual responsive devices deliver optical contrast over 50% and independent modulation of visible and near infrared band. In addition to displaying four reversible optical states in response to environmental tempe… Show more

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Cited by 12 publications
(11 citation statements)
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“…To make this design more responsive, we improved the design of Li + /Al 3+ -based electrothermal dual response devices using a tightly bonded bilayer of solid electrolytes between the VO 2 thermochromic and WO 3 electrochromic layers 16 (Figure 5B). By responding to both voltage and temperature, the device achieved four dynamic dimming modes (i.e., "bright," "cool," "shade," and "strong cool"), which matched the changes in the ambient temperature and light intensity throughout the day; moreover, the response speed was significantly improved.…”
Section: Photothermal Modulationmentioning
confidence: 99%
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“…To make this design more responsive, we improved the design of Li + /Al 3+ -based electrothermal dual response devices using a tightly bonded bilayer of solid electrolytes between the VO 2 thermochromic and WO 3 electrochromic layers 16 (Figure 5B). By responding to both voltage and temperature, the device achieved four dynamic dimming modes (i.e., "bright," "cool," "shade," and "strong cool"), which matched the changes in the ambient temperature and light intensity throughout the day; moreover, the response speed was significantly improved.…”
Section: Photothermal Modulationmentioning
confidence: 99%
“…(J) Comprehensive performance index of three types of devices. Panels C–J reproduced with permission from ref . Copyright 2022 John Wiley & Sons, Inc.…”
Section: Strategies Of Fast-switching Wo3-based Ecdsmentioning
confidence: 99%
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“…Tungsten oxide is the most classical and commonly used EC material. In recent years, it has been found that tungsten oxide NCs have LSPR absorption in the NIR region between 780 and 1500 nm, which just matches the solar thermal energy distribution of sunlight . However, the LSPR effect of intrinsic WO 3 NCs is weak because of the low free carrier concentration, and its plasmonic EC ability is reported to be poor.…”
Section: Typical Ncs For Deswsmentioning
confidence: 99%