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通过可逆镍铜电沉积实现的隔热黑色电致变色器件

Heat-Insulating Black Electrochromic Device Enabled by Reversible Nickel-Copper Electrodeposition.

作者信息

Guo Xiaoyu, Chen Jingwei, Eh Alice Lee-Sie, Poh Wei Church, Jiang Fan, Jiang Feng, Chen Juntong, 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

ACS Appl Mater Interfaces. 2022 May 4;14(17):20237-20246. doi: 10.1021/acsami.2c02626. Epub 2022 Apr 25.

Abstract

An electrochromic device (ECD), which can switch between black and transmissive states under electrical bias, is a promising candidate for smart windows due to its color neutrality and excellent durability. Most of the black ECDs are achieved through a reversible electrodeposition and dissolution mechanism; however, they typically suffer from relatively poor cycling stability and a slow coloration/bleaching time. Herein, we present a heat-insulating black ECD with a gel electrolyte that operates via reversible Ni-Cu electrodeposition and dissolution. With the adoption of a Cu alloying strategy and a compatible gel electrolyte, this two-electrode ECD (5.0 cm × 2.5 cm) can achieve a cycling stability of 1500 cycles with transmittance modulation up to 55.2% in short coloration (6.2 s) and bleaching times (13.2 s) at a wavelength of 550 nm. Additionally, the ECD can be switched from the transparent state (visible light transmittance: 0.566) to the opaque state (visible light transmittance: 0.003) within 1 min, reaching transmittance less than 5% across the visible-near-infrared spectrum (400-2000 nm) to efficiently block solar heat. Besides, in the voltage-off state, the black Ni-Cu alloy film can be sustained for more than 60 min (at room temperature, λ = 550 nm). Under infrared irradiation (170 W/m) for 30 min, the black ECD blocks up to 35.0% of infrared radiation, which not only effectively prevents the heat transmission for energy management but also finds potential applications for promoting indoor human health and indoor farming.

摘要

一种电致变色器件(ECD),在电偏压下可在黑色和透射状态之间切换,由于其颜色中性和出色的耐久性,是智能窗户的一个有前途的候选者。大多数黑色ECD是通过可逆电沉积和溶解机制实现的;然而,它们通常存在循环稳定性相对较差以及着色/漂白时间较慢的问题。在此,我们展示了一种带有凝胶电解质的隔热黑色ECD,其通过可逆的镍 - 铜电沉积和溶解来运行。通过采用铜合金化策略和兼容的凝胶电解质,这种两电极ECD(5.0厘米×2.5厘米)在550纳米波长下,短着色时间(6.2秒)和漂白时间(13.2秒)内可实现1500次循环的循环稳定性,透光率调制高达55.2%。此外,该ECD可在1分钟内从透明状态(可见光透过率:0.566)切换到不透明状态(可见光透过率:0.003),在可见光 - 近红外光谱(400 - 2000纳米)范围内透光率低于5%,以有效阻挡太阳热量。此外,在断电状态下,黑色镍 - 铜合金膜可持续超过60分钟(在室温下,λ = 550纳米)。在170瓦/平方米的红外辐射下照射30分钟,黑色ECD可阻挡高达35.0%的红外辐射,这不仅有效地防止了热量传输用于能源管理,还在促进室内人类健康和室内种植方面找到了潜在应用。

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