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Thermally-stable dynamic windows based on reversible metal electrodeposition from aqueous electrolytes

机译:基于含水电解质可逆金属电沉积的热稳态动态窗

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Dynamic windows based on the reversible electrodeposition of metals are a promising alternative to those utilizing electrochromic materials. In this manuscript, we develop 25 cm(2) dynamic windows based on the reversible electrodeposition of Cu and Bi from aqueous gel electrolytes that switch with a contrast ratio of similar to 80% in one minute. Although the aqueous electrolyte promotes rapid and uniform metal electrodeposition, its narrow operable temperature range limits practical implementation of the devices. To overcome this issue, we employ additives that prevent electrolyte freezing while still allowing for reversible metal electrodeposition. With properly-selected antifreezes that do not bind strongly to metal ions, the windows switch reversibly at temperatures down to -40 degrees C. The enhanced thermal stability of these systems is necessary for the practical implementation of metal-based dynamic windows.
机译:基于可逆电沉积金属的动态窗是利用电致变色材料的有希望的替代品。 在该稿件中,我们基于Cu和Bi的可逆电沉积从凝胶电解质的可逆电解,从凝胶电解质的凝胶电解质的相对比在一分钟内切换到80%。 尽管水性电解质促进了快速且均匀的金属电沉积,但其窄的可操作温度范围限制了器件的实际实施。 为了克服这个问题,我们使用可防止电解质冷冻的添加剂,同时仍然允许可逆金属电沉积。 With properly-selected antifreezes that do not bind strongly to metal ions, the windows switch reversibly at temperatures down to -40 degrees C. The enhanced thermal stability of these systems is necessary for the practical implementation of metal-based dynamic windows.

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