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一种用于智能窗户和温度监测的具有可调转变温度的热致变色水合离子聚合物。

A Thermochromic Hydrated Ionic Polymer with an Adjustable Transition Temperature for Smart Windows and Temperature Monitoring.

作者信息

Wang Huaiyuan, Qi Tao, Wang Jie, Lu Yuanwei, Tian Xuefeng, Wang Meiqi, Liu Hanchi, Wang Jiayao, Qu Zhibin, Zhou Wei, Sun Fei, Gao Jihui, Zhao Guangbo

机构信息

School of Energy Science and Engineering, Harbin Institute of Technology, Harbin 150001, China.

出版信息

ACS Appl Mater Interfaces. 2025 Jul 2;17(26):38427-38437. doi: 10.1021/acsami.5c04942. Epub 2025 Jun 23.

Abstract

Thermochromic materials with customizable transition temperatures are essential for energy-efficient, smart windows and temperature-monitoring applications. This study presents a hydrated ionic polymer featuring Ni as the central ion, where reversible transitions between octahedral and tetrahedral coordination enable tunable light absorption. By adjustment of the polyvinylpyrrolidone (PVP)/poly(vinyl alcohol) (PVA) ratio, the hydroxyl content is precisely controlled, achieving a transition temperature range of 30-50 °C. The material exhibits a solar modulation of 8-23% and visible-light modulation of 10-39%, with no phase separation during operation. A two-step ligand exchange mechanism is identified: at low temperatures, HO coordinates with Ni, forming a transparent octahedral structure. As the temperature rises, water desorbs and Cl partially replaces HO, producing a blue tetrahedral structure. Further heating triggers -OH dissociation, allowing more Cl coordination, deepening the blue color. Molecular dynamics simulations reveal that the PVP/PVA ratio controls water diffusion and hydrogen bonding. Practical tests demonstrate that this polymer reduces solar-exposed temperatures by 10 °C in smart windows and serves as an effective temperature-monitoring label with excellent cycling stability over 100 cycles. This study presents a new perspective for designing thermochromic materials with customizable properties, offering new insights for energy-saving and sensing applications.

摘要

具有可定制转变温度的热致变色材料对于节能智能窗户和温度监测应用至关重要。本研究展示了一种以镍为中心离子的水合离子聚合物,其中八面体和四面体配位之间的可逆转变可实现可调光吸收。通过调整聚乙烯吡咯烷酮(PVP)/聚乙烯醇(PVA)的比例,可以精确控制羟基含量,实现30-50°C的转变温度范围。该材料的太阳能调制率为8-23%,可见光调制率为10-39%,在运行过程中无相分离现象。确定了一种两步配体交换机制:在低温下,羟基与镍配位,形成透明的八面体结构。随着温度升高,水脱附,氯部分取代羟基,产生蓝色四面体结构。进一步加热会引发羟基解离,使更多氯配位,加深蓝色。分子动力学模拟表明,PVP/PVA比例控制水的扩散和氢键。实际测试表明,这种聚合物可使智能窗户在阳光照射下的温度降低10°C,并作为一种有效的温度监测标签,在100次循环中具有出色的循环稳定性。本研究为设计具有可定制特性的热致变色材料提供了新视角,为节能和传感应用提供了新见解。

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