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一种具有增强稳定性的准固态三态可逆电化学镜器件。

A Quasi-Solid-State Tristate Reversible Electrochemical Mirror Device with Enhanced Stability.

作者信息

Eh Alice Lee-Sie, Chen Jingwei, Yu Shu Hearn, Thangavel Gurunathan, Zhou Xinran, Cai Guofa, Li Shaohui, Chua Daniel H C, Lee Pooi See

机构信息

School of Materials Science and Engineering Nanyang Technological University 50 Nanyang Avenue Singapore 639798 Singapore.

Singapore-HUJ Alliance for Research and Enterprise (SHARE) Nanomaterials for Energy and Energy Water Nexus (NEW) Campus for Research Excellence and Technological Enterprise (CREATE) Singapore 138602 Singapore.

出版信息

Adv Sci (Weinh). 2020 May 12;7(13):1903198. doi: 10.1002/advs.201903198. eCollection 2020 Jul.

Abstract

Reversible electrochemical mirror (REM) electrochromic devices with electrochemical tunability in multiple optical states are exciting alternatives to conventional electrochromic smart windows. Electrochromic devices are studied extensively, yet widespread adoptions have not been achieved due to problems associated with durability, switching speed, limited options on optical states, and cost. In this study, a REM electrochromic device based on CuSn alloy is developed, which offers highly reversible switching between transparent, greyish-blue, and mirror states via reversible electrodeposition and dissolution. The alloying element, Sn acts as an electrochemical mediator, which facilitates the electrodeposition and dissolution of Cu. The CuSn-based REM device shows superior cycling stability for 2400 cycles (transmittance mode) and 1000 cycles (reflectance mode). The electrodeposited CuSn alloy film is resistant to surface oxidation in ambient air, with a 2.9% difference in reflectance at 2000 nm after 3 days. In addition, the alloy film exhibits excellent NIR reflectance property with thermal modulation of 18.5 °C at a high temperature of 180 °C. The REM device with zero power consumption maintains its mirror state for at least 100 min, making it a promising candidate for energy-efficient applications.

摘要

具有多种光学状态下电化学可调性的可逆电化学镜(REM)电致变色器件是传统电致变色智能窗令人兴奋的替代方案。电致变色器件已得到广泛研究,但由于与耐久性、开关速度、光学状态选择有限以及成本相关的问题,尚未实现广泛应用。在本研究中,开发了一种基于CuSn合金的REM电致变色器件,它通过可逆电沉积和溶解在透明、灰蓝色和镜面状态之间提供高度可逆的切换。合金元素Sn充当电化学介质,促进Cu的电沉积和溶解。基于CuSn的REM器件在2400次循环(透射率模式)和1000次循环(反射率模式)下显示出优异的循环稳定性。电沉积的CuSn合金膜在环境空气中抗表面氧化,3天后在2000 nm处的反射率差异为2.9%。此外,合金膜在180°C的高温下表现出优异的近红外反射特性,热调制为18.5°C。零功耗的REM器件在其镜面状态下至少保持100分钟,使其成为节能应用的有前途的候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/374b/7341104/835f31c8a588/ADVS-7-1903198-g001.jpg

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