Zhu Guangjun, Xu Gang, Zhang Yu, Lu Guo, Cai Xuan, Zhang Wei, She Wei, Miao Changwen
State Key Laboratory of High Performance Civil Engineering Materials, Southeast University, Nanjing 211189, China.
School of Materials Science and Engineering, Southeast University, Nanjing 211189, China.
Research (Wash D C). 2024 Sep 3;7:0462. doi: 10.34133/research.0462. eCollection 2024.
Thermo-responsive hydrogels can dynamically modulate incident light, providing a broad prospect for development of smart windows, which are of pivotal importance for energy conservation in buildings. However, these hydrogels normally exhibit slow response speed and tend to contract over extended phase transition, compromising structural integrity of smart windows. In this study, a solid-liquid switchable thermochromic hydrogel, denoted as SL-PNIPAm, was synthesized by cross-linking PNIPAm with AMEO through dynamic imine bonds. Due to its distinctive solid-liquid transformation characteristics, SL-PNIPAm demonstrates rapid response time (within 5 s) and retains structural integrity without undergoing shrinkage during heating/cooling and freezing/thawing cycles. SL-PNIPAm can also be encapsulated within 2 glass panels to prepare smart windows, which showed extraordinary luminous transmittance ( = 96.8%) and solar modulation ability (Δ = 89.7%) and effectively reduced the indoor temperature (22 °C) in a simulated indoor experiment. Energy consumption simulation investigations are performed in diverse cities. The results reveal that SLW is capable of achieving a remarkable 54% reduction of HVAC energy consumption, leading to substantial decrease in CO emissions by up to 40 kg m annually. This work develops a new hydrogel system with outstanding durability for smart windows and will promote the development and renovation of thermochromic smart windows.
热响应水凝胶可以动态调节入射光,为智能窗户的发展提供了广阔前景,而智能窗户对于建筑节能至关重要。然而,这些水凝胶通常表现出较慢的响应速度,并且在长时间的相变过程中容易收缩,从而损害智能窗户的结构完整性。在本研究中,通过动态亚胺键将聚N-异丙基丙烯酰胺(PNIPAm)与3-氨基乙氧基甲基丙烯酸酯(AMEO)交联,合成了一种固液可切换的热致变色水凝胶,记为SL-PNIPAm。由于其独特的固液转变特性,SL-PNIPAm表现出快速的响应时间(5秒内),并且在加热/冷却和冷冻/解冻循环过程中保持结构完整性而不发生收缩。SL-PNIPAm还可以封装在两块玻璃板之间以制备智能窗户,该智能窗户显示出非凡的透光率(τ = 96.8%)和太阳调制能力(Δτ = 89.7%),并在模拟室内实验中有效降低了室内温度(22°C)。在不同城市进行了能耗模拟研究。结果表明,SLW能够显著降低54%的暖通空调能耗,每年可大幅减少高达40 kg m的二氧化碳排放量。这项工作开发了一种用于智能窗户的具有出色耐久性的新型水凝胶系统,并将推动热致变色智能窗户的发展和革新。