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Highly Transparent Conjugated Polymer as the Counter Electrode in Electrochromic Smart Windows

机译:高透明共轭聚合物作为电致变色智能窗户的对电极

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摘要

A highly transmissive counter electrode material (CEM) at both neutral and doped states in the visible range is essential for the optical performance of electrochromic devices (ECDs), but is rarely reported due to the challenge in molecular design. Herein a novel conjugated polymer HTCP is reported, which exhibits a wide bandgap (3.02 eV) and a strong absorption at 300 nm in its neutral state. Upon oxidation, the absorption spectrum is substantially red-shifted, peaking at 900 nm. Thus HTCP can keep high transparency throughout the whole visible range at both states, making it particularly wellsuited as the CEM in ECDs, which is demonstrated by the excellent optoelectronic performance of a smart window-type ECD in this work. Furthermore, the geometric and electronic configuration study of its building block reveals that HTCP evolves from a closed-shell butterfly-like folded structure into a twisted geometry featuring a quinoidal open-shell character after oxidation, explaining the nature of its unique optical properties. This work provides new insights and explicit instructions for the structural design of conjugated polymer-based CEMs. In addition, it offers a clear scenario for the application of open-shell materials in optoelectronics, not only limited to the chemical fundamental studies.
机译:在可见光范围内,中性和掺杂态的高透射率对电极材料 (CEM) 对于电致变色器件 (ECD) 的光学性能至关重要,但由于分子设计方面的挑战,很少被报道。本文报道了一种新型共轭聚合物HTCP,其在中性状态下表现出宽禁带(3.02 eV)和300 nm处的强吸收。氧化后,吸收光谱发生红移,在900 nm处达到峰值。因此,HTCP可以在两种状态下在整个可见光范围内保持高透明度,使其特别适合于ECD中的CEM,这体现在智能窗口型ECD的出色光电性能上。此外,对其构件的几何和电子构型研究表明,HTCP从闭壳蝴蝶状折叠结构演变为具有氧化后醌状开壳特征的扭曲几何结构,解释了其独特的光学性质。这项工作为共轭聚合物基CEM的结构设计提供了新的见解和明确的指导。此外,它为开壳材料在光电子学中的应用提供了一个清晰的场景,不仅限于化学基础研究。

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