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用于智能窗户的具有优异环境和机械稳定性、太阳调制及防雾能力的自粘自修复热致变色离子凝胶

Self-Adhesive Self-Healing Thermochromic Ionogels for Smart Windows with Excellent Environmental and Mechanical Stability, Solar Modulation, and Antifogging Capabilities.

作者信息

Li Bing, Xu Fuchang, Guan Tingting, Li Yang, Sun Junqi

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, P. R. China.

出版信息

Adv Mater. 2023 May;35(20):e2211456. doi: 10.1002/adma.202211456. Epub 2023 Mar 30.

Abstract

Current thermochromic materials used in smart windows still face challenges, such as poor mechanical and environmental stability, unsatisfactory solar modulation capacity, and low transparency. Herein, the first self-adhesive self-healing thermochromic ionogels with excellent mechanical and environmental stability, antifogging capability, transparency, and solar modulation capability by loading binary ionic liquids (ILs) into rational-designed self-healing poly(urethaneurea) with acylsemicarbazide (ASCZ) moieties that have reversible and multiple hydrogen bonds are reported and their feasibility as smart windows with reliability and long service life is demonstrated. The self-healing thermochromic ionogels can switch between transparent and opaque without leakage or shrinkage, by the constrained reversible phase separation of ILs within the ionogels. The ionogels have the highest transparency and solar modulation capability among reported thermochromic materials and such excellent solar modulation capability can be well maintained after undergoing 1000 transitions, stretches, and bends, and storage at -30 °C, 60 °C, 90% RH, and vacuum environment for 2 months. The formation of high-density hydrogen bonds among the ASCZ moieties contributes to the excellent mechanical strength of the ionogels and allows the thermochromic ionogels to spontaneously heal their damages and be fully recycled at room temperature without the loss of thermochromic capabilities.

摘要

目前用于智能窗户的热致变色材料仍面临挑战,如机械和环境稳定性差、太阳调制能力不理想以及透明度低等问题。在此,通过将二元离子液体(ILs)负载到具有酰基氨基脲(ASCZ)部分的合理设计的自修复聚(聚氨酯脲)中,报道了第一种具有优异机械和环境稳定性、防雾能力、透明度和太阳调制能力的自粘性自修复热致变色离子凝胶,并证明了其作为具有可靠性和长使用寿命的智能窗户的可行性。自修复热致变色离子凝胶可通过离子凝胶内ILs的受限可逆相分离在透明和不透明之间切换,且无泄漏或收缩。该离子凝胶在已报道的热致变色材料中具有最高的透明度和太阳调制能力,并且在经历1000次转变、拉伸和弯曲以及在-30°C、60°C、90%相对湿度和真空环境中储存2个月后,仍能很好地保持这种优异的太阳调制能力。ASCZ部分之间形成的高密度氢键有助于离子凝胶具有优异的机械强度,并使热致变色离子凝胶能够在室温下自发修复损伤并完全回收利用,而不会损失热致变色能力。

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