Wijenayaka Lahiru A, Wijesena Ruchira N, Tissera Nadeeka D, Nisansala Bandara W R L, Amaratunga Gehan J, Nalin De Silva K M
Sri Lanka Institute of Nanotechnology (SLINTEC), Mahenwatte, Pitipana, Homagama 10200, Sri Lanka.
Department of Chemistry, The Open University of Sri Lanka, Nawala 10250, Sri Lanka.
R Soc Open Sci. 2021 May 19;8(5):202222. doi: 10.1098/rsos.202222.
Propensity of a textile material to evaporate moisture from its surface, commonly referred to as the 'moisture management' ability, is an important characteristic that dictates the applicability of a given textile material in the activewear garment industry. Here, an infrared absorbing nanoparticle impregnated self-heating (IRANISH) fabric is developed by impregnating tin-doped indium oxide (ITO) nanoparticles into a polyester fabric through a facile high-pressure dyeing approach. It is observed that under simulated solar radiation, the impregnated ITO nanoparticles can absorb IR radiation, which is effectively transferred as thermal energy to any moisture present on the fabric. This transfer of thermal energy facilitates the enhanced evaporation of moisture from the IRANISH fabric surface and as per experimental findings, a 54 ± 9% increase in the intrinsic drying rate is observed for IRANISH fabrics compared with control polyester fabrics that are treated under identical conditions, but in the absence of nanoparticles. Approach developed here for improved moisture management via the incorporation of IR absorbing nanomaterials into a textile material is novel, facile, efficient and applicable at any stage of garment manufacture. Hence, it allows us to effectively overcome the limitations faced by existing yarn-level and structural strategies for improved moisture management.
纺织材料从其表面蒸发水分的倾向,通常被称为“水分管理”能力,是决定给定纺织材料在运动服装行业适用性的一个重要特性。在此,通过一种简便的高压染色方法将掺锡氧化铟(ITO)纳米颗粒浸渍到聚酯织物中,开发出了一种浸渍有红外吸收纳米颗粒的自热(IRANISH)织物。据观察,在模拟太阳辐射下,浸渍的ITO纳米颗粒能够吸收红外辐射,并有效地将其作为热能传递给织物上存在的任何水分。这种热能传递促进了水分从IRANISH织物表面的增强蒸发,根据实验结果,与在相同条件下处理但不含纳米颗粒的对照聚酯织物相比,IRANISH织物的固有干燥速率提高了54±9%。此处开发的通过将红外吸收纳米材料掺入纺织材料来改善水分管理的方法是新颖、简便、高效的,并且适用于服装制造的任何阶段。因此,它使我们能够有效克服现有纱线级和结构策略在改善水分管理方面面临的局限性。