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Aqueous alkaline electrolytes for dynamic windows based on reversible metal electrodeposition with improved durability

机译:基于可逆金属电沉积的动态窗口水性碱性电解质,具有改进的耐用性

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Dynamic windows, which have electronically tunable transmission, are desirable for buildings and automobiles due to their aesthetics and ability to reduce lighting, heating, and cooling energy costs. Reversible metal electrodeposition has recently emerged as a promising alternative to dynamic windows based on electrochromic materials. In this manuscript, we develop alkaline electrolytes that facilitate the reversible electrodeposition of Bi and Cu. Through spectroelectrochemical measurements, we determined that a chelating ligand can be used to design optically reversible devices that exhibit sufficient Bi3+ solubility in alkaline media. Unlike previously studied acidic Bi-Cu electrolytes, these alkaline electrolytes do not degrade the tin-doped indium oxide transparent conductors typically used in dynamic windows. As a result, we demonstrate that practical two-electrode 25 cm(2) dynamic windows with these alkaline electrolytes exhibit superior durability to those containing acidic electrolytes. These results are important for the advancement of robust reversible metal electrodeposition technologies.
机译:具有电子可调谐传输的动态窗口对于建筑物和汽车来说是可取的,这是由于它们的美学和减少照明,加热和冷却能耗的能力。最近,可逆金属电沉积是基于电致变色材料的动态窗口的有希望的替代品。在该稿件中,我们开发碱性电解质,促进Bi和Cu的可逆电沉积。通过光谱电化学测量,确定螯合配体可用于设计在碱性介质中表现出足够的Bi3 +溶解度的光学可逆装置。与先前研究的酸性Bi-Cu电解质不同,这些碱性电解质不会降低通常用于动态窗口中的掺杂锡掺杂的氧化铟氧化物透明导体。结果,我们证明了具有这些碱性电解质的实用的两电极25cm(2)动态窗口对含有酸性电解质的那些具有卓越的耐久性。这些结果对于稳健的可逆金属电沉积技术的进步很重要。

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