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应用于储能电致变色器件的新型阳极变色材料。

New Anodic Discoloration Materials Applying Energy-Storage Electrochromic Device.

作者信息

Chen Po-Wen, Chang Chen-Te

机构信息

Division of Physics, Institute of Nuclear Energy Research, Taoyuan City 325207, Taiwan.

出版信息

Materials (Basel). 2023 Aug 2;16(15):5412. doi: 10.3390/ma16155412.

Abstract

We have assessed new anodic coloring materials that can be used as ion storage layers in complementary energy storage electrochromic devices (ESECDs) to enhance their electrochromic storage performance. In our study, we fabricated counter electrodes (ion storage layers) using an IrO-doping NiO (Ir:NiO) film through cathodic arc plasma (CAP) with varying surface charge capacities. We have also investigated the influence of a MoO-doped WO (Mo:WO) film using various Ar/O gas flow ratios (1/4, 1/5, and 1/6, respectively). The ESECDs used in the demonstration were 10 × 10 cm in size and achieved an optical transmittance modulation of the Ir:NiO ESECDs (glass/ITO/ Mo:WO/gel polymer electrolytes/ Ir:NiO/ITO/glass), with ΔT = 53.3% (from T (66.6%) to T (13.1%)). The ESECDs had a quick coloration time of 3.58 s, a rapid bleaching time of 1.24 s, and a high cycling durability. Furthermore, it remained at a 45% transmittance modulation level even after 3000 cycles. New anodic materials can thereby provide an alternative to traditional active materials for bi-functional electrochromic batteries.

摘要

我们评估了可作为互补储能电致变色器件(ESECDs)中的离子存储层以增强其电致变色存储性能的新型阳极着色材料。在我们的研究中,我们通过具有不同表面电荷容量的阴极电弧等离子体(CAP)使用IrO掺杂的NiO(Ir:NiO)薄膜制备了对电极(离子存储层)。我们还研究了使用各种Ar/O气体流量比(分别为1/4、1/5和1/6)的MoO掺杂的WO(Mo:WO)薄膜的影响。演示中使用的ESECDs尺寸为10×10 cm,Ir:NiO ESECDs(玻璃/ITO/Mo:WO/凝胶聚合物电解质/Ir:NiO/ITO/玻璃)实现了光透射率调制,ΔT = 53.3%(从T(66.6%)到T(13.1%))。ESECDs具有3.58 s的快速着色时间、1.24 s的快速漂白时间和高循环耐久性。此外,即使在3000次循环后,它仍保持在45%的透射率调制水平。因此,新型阳极材料可为双功能电致变色电池的传统活性材料提供替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02e1/10419586/5293648bd2c5/materials-16-05412-g001.jpg

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