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采用氧缺陷氧化钨超薄多孔膜修饰的混合电极制备大面积、经济实惠的双功能电致变色智能窗

Fabrication of Large-Area, Affordable Dual-Function Electrochromic Smart Windows by Using a Hybrid Electrode Coated with an Oxygen-Deficient Tungsten Oxide Ultrathin Porous Film.

机构信息

Centre for Nano and Soft Matter Sciences, Bangalore 562162, India.

Manipal Academy of Higher Education, Manipal 576104, Karnataka, India.

出版信息

ACS Appl Mater Interfaces. 2023 Apr 19;15(15):19111-19120. doi: 10.1021/acsami.2c22638. Epub 2023 Apr 4.

Abstract

Electrochromic (EC) devices are not commercialized extensively owing to their high cost. The best large-area devices in the market suffer from not reaching a distinct dark-colored state. These devices appear more like a blue tinted glass. While a better performance demands the use of appropriate components, the cost-effectiveness of such components is crucial for commercialization. Specifically, the utilization of cost-effective electrodes, thin WO coatings, and inexpensive electrolytes are essential for reducing the cost of EC devices. Here, we report a high-performing porous WO thin film (∼130 nm) achieved by optimizing the DC sputtering process parameters. This way, an affordable dual-function EC energy-storage device was fabricated, showing 84% transmittance modulation and a high power density of 3036 mW/m, thus functioning simultaneously as a transparency switching energy-storage device. With a large-area (900 cm) device, we have demonstrated that the need for expensive ITO electrodes and Li ion-based electrolytes can be eliminated by using a hybrid electrode (ITO/Al-mesh) and multivalent Al ion-based electrolytes while not compromising the device performance. The findings of this study may revolutionize the EC device industry and their commercialization owing to inexpensive ingredients and scalable processing.

摘要

电致变色 (EC) 器件由于成本高,尚未广泛商业化。市场上最好的大面积器件都无法达到明显的深色状态。这些器件看起来更像是带蓝色色调的玻璃。虽然更好的性能需要使用适当的组件,但这些组件的性价比对于商业化至关重要。具体来说,使用具有成本效益的电极、薄 WO 涂层和廉价电解质对于降低 EC 器件的成本至关重要。在这里,我们报告了一种通过优化直流溅射工艺参数获得的高性能多孔 WO 薄膜(约 130nm)。通过这种方式,制造了一种价格实惠的双功能 EC 储能器件,其透光率调制达到 84%,功率密度高达 3036mW/m,因此可同时作为透明开关储能器件。使用大面积(900cm)器件,我们已经证明,通过使用混合电极(ITO/Al 网)和多价 Al 离子电解质,可以消除对昂贵的 ITO 电极和基于 Li 离子电解质的需求,同时不影响器件性能。由于成本低廉的成分和可扩展的处理工艺,这项研究的发现可能会彻底改变 EC 器件行业及其商业化。

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