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具有高光学透明度和低相变温度的热致变色 Ni(II) 金属有机化合物,用于节能智能窗户。

Thermochromic Ni(II) Organometallics With High Optical Transparency and Low Phase-Transition Temperature for Energy-Saving Smart Windows.

机构信息

School of Physics and Materials Science, Nanchang University, Nanchang, 330031, China.

Jiangxi Sun-Nano Advanced Materials Technology Co. Ltd. , Ganzhou, 341000, China.

出版信息

Small. 2023 Jun;19(22):e2205833. doi: 10.1002/smll.202205833. Epub 2023 Mar 6.

Abstract

Thermochromic smart windows with rational modulation in indoor temperature and brightness draw considerable interest in reducing building energy consumption, which remains a huge challenge to meet the comfortable responsive temperature and the wide transmittance modulation range from visible to near-infrared (NIR) light for their practical application. Herein, a novel thermochromic Ni(II) organometallic of [(C H ) NH ] NiCl for smart windows is rationally designed and synthesized via an inexpensive mechanochemistry method, which processes a low phase-transition temperature of 46.3 °C for the reversible color evolution from transparent to blue with a tunable visible transmittance from 90.5% to 72.1%. Furthermore, cesium tungsten bronze (CWO) and antimony tin oxide (ATO) with excellent NIR absorption in 750-1500 and 1500-2600 nm are introduced in the [(C H ) NH ] NiCl -based smart windows, realizing a broadband sunlight modulation of a 27% visible light modulation and more than 90% of NIR shielding ability. Impressively, these smart windows demonstrate stable and reversible thermochromic cycles at room temperature. Compared with the conventional windows in the field tests, these smart windows can significantly reduce the indoor temperature by 16.1 °C, which is promising for next-generation energy-saving buildings.

摘要

具有室内温度和亮度合理调节功能的热致变色智能窗户在降低建筑能耗方面引起了相当大的兴趣,这对于它们的实际应用仍然是一个巨大的挑战,需要满足舒适的响应温度和从可见光到近红外(NIR)光的宽透射率调节范围。在此,通过一种廉价的机械化学方法,合理设计并合成了一种用于智能窗户的新型热致变色 Ni(II) 金属有机化合物 [(C H ) NH ] NiCl ,其具有 46.3°C 的低相变温度,可实现从透明到蓝色的可逆颜色演变,具有可调的可见光透射率从 90.5%到 72.1%。此外,在 [(C H ) NH ] NiCl 基智能窗户中引入了具有优异的 750-1500nm 和 1500-2600nm 近红外吸收的钨青铜(CWO)和氧化锡锑(ATO),实现了 27%可见光调制和超过 90%的近红外屏蔽能力的宽带太阳光调制。令人印象深刻的是,这些智能窗户在室温下表现出稳定且可逆的热致变色循环。与现场测试中的传统窗户相比,这些智能窗户可以显著降低室内温度 16.1°C,有望用于下一代节能建筑。

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