Zhang Shuqi, Zhou Zhihua, Yang Xueqing, Wang Cheng, Chao Yuechao, Du Yahui, Tang Huajie, Liang Yan, Zhou Yifan, Zhang Weiyi, Liu Junwei, Yan Jinyue
School of Environmental Science and Engineering, Tianjin University, Tianjin 300350, China.
School of Energy and Environment, Southeast University, Nanjing 210096, China.
ACS Appl Mater Interfaces. 2025 Jun 18;17(24):35562-35571. doi: 10.1021/acsami.5c06052. Epub 2025 Jun 4.
Maintaining a stable body temperature proves to be critical for human survival and functional capacity. However, conventional textiles exhibit significant limitations in preserving thermoregulatory microenvironments during dynamic climatic variations. Herein, we present a dual-mode textile (DMT) that combines radiative cooling and solar thermal harvesting technology to achieve year-round passive thermal regulation. The DMT cooling layer demonstrates an impressive performance with 96.1% solar reflectance and 92.0% mid-infrared emissivity. Under direct sunlight, it achieves an average temperature drop of 6.37 °C, corresponding to an average cooling power of 53.3 W/m. In heating mode, its high solar absorptivity of 90% results in an average temperature increase of 16.3 °C compared to that of ambient temperature. Additionally, the DMT demonstrated excellent mechanical properties and water vapor permeability. Real-world wear tests of the DMT shows a 2.3 °C temperature reduction compared to that of a plain white cotton T-shirt, along with excellent heating performance. Furthermore, simulations indicate that the DMT could cool by ∼5 °C in the summer and insulate by ∼13 °C in the winter compared to conventional clothing. On the whole, this work enables dynamic thermal management across varying conditions, introducing possibilities in the rational design of next-generation smart textiles.
维持稳定的体温对人类生存和身体机能至关重要。然而,传统纺织品在动态气候变化期间保持温度调节微环境方面存在显著局限性。在此,我们展示了一种双模纺织品(DMT),它结合了辐射冷却和太阳能热采集技术,以实现全年被动式温度调节。DMT冷却层表现出令人印象深刻的性能,太阳能反射率为96.1%,中红外发射率为92.0%。在直射阳光下,它实现了6.37℃的平均温度下降,对应于53.3W/m的平均冷却功率。在加热模式下,其90%的高太阳能吸收率导致与环境温度相比平均温度升高16.3℃。此外,DMT表现出优异的机械性能和水汽渗透性。DMT的实际穿着测试表明,与普通白色棉质T恤相比,温度降低了2.3℃,同时具有出色的加热性能。此外,模拟表明,与传统服装相比,DMT在夏季可降温约5℃,在冬季可保温约13℃。总体而言,这项工作实现了在不同条件下的动态热管理,为下一代智能纺织品的合理设计带来了可能性。