Lan Chuntao, Liang Muchen, Meng Jia, Mao Qinghui, Ma Wujun, Li Min, Pu Xiong
College of Textile and Garment, Nantong University, Nantong 226019, China.
CAS Center for Excellent in Nanoscience, Beijing Key Laboratory of Micro-nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 100083, China.
ACS Nano. 2025 Mar 4;19(8):8294-8302. doi: 10.1021/acsnano.4c18643. Epub 2025 Feb 20.
Personal thermal management (PTM) fabrics with energy efficiency and cost-effectiveness have been rapidly developed in recent years, but it still remains challenging to maintain a favorable body temperature through one cloth in complex and dynamic environments. Herein, we propose an asymmetric fabric for self-adaptive thermal management with the aim of enhancing thermal comfort in outdoor environments. This fabric consists of an electrospun polyamide (PA) fabric and a PPy@MXene coating layer integrated into a kirigami structure. The PPy@MXene coating, a highly efficient photothermal conversion material, imparts the fabric with a substantial temperature increase of 44 °C under one sun of irradiation. By leveraging the hygroscopic expansion property of the PA fabric, the PPy@MXene/PA fabric exhibits high sensitivity as an actuator in response to humidity. After incorporating a kirigami-inspired design, the patterned fabric efficiently harnesses solar energy under weak sunlight irradiation for heating purposes and automatically opens channels for heat release when evaporating perspiration. This dynamic fabric demonstrates superior self-adaptivity compared to conventional static fabrics, thus, presenting great insights in developing smart PTM systems.
近年来,具有能源效率和成本效益的个人热管理(PTM)织物得到了迅速发展,但在复杂多变的环境中,仅通过一块布料来维持适宜的体温仍然具有挑战性。在此,我们提出一种用于自适应热管理的不对称织物,旨在提高户外环境中的热舒适性。这种织物由电纺聚酰胺(PA)织物和集成到折纸结构中的聚吡咯@MXene涂层组成。聚吡咯@MXene涂层是一种高效的光热转换材料,在一个太阳光照下可使织物温度大幅升高44°C。通过利用PA织物的吸湿膨胀特性,聚吡咯@MXene/PA织物作为湿度响应的致动器表现出高灵敏度。在采用折纸启发的设计后,图案化织物在弱太阳光照射下能有效地利用太阳能进行加热,并在汗液蒸发时自动打开散热通道。与传统的静态织物相比,这种动态织物表现出卓越的自适应能力,因此,为开发智能PTM系统提供了重要的见解。