Ferreira Mónica P S, Gonçalves Afonso S, Antunes Joana C, Bessa João, Cunha Fernando, Fangueiro Raúl
Fibrenamics-Institute for Innovation in Fiber-Based Materials and Composites, University of Minho, Campus de Azurém, 4800-058 Guimarães, Portugal.
Centre for Textile Science and Technology (2C2T), University of Minho, Campus de Azurém, 4800-058 Guimarães, Portugal.
Polymers (Basel). 2024 May 9;16(10):1345. doi: 10.3390/polym16101345.
In recent decades, the interest in responsive fibrous structures has surged, propelling them into diverse applications: from wearable textiles that adapt to their surroundings, to filtration membranes dynamically altering selectivity, these structures showcase remarkable versatility. Various stimuli, including temperature, light, pH, electricity, and chemical compounds, can serve as triggers to unleash physical or chemical changes in response. Processing methodologies such as weaving or knitting using responsive yarns, electrospinning, as well as coating procedures, enable the integration of responsive materials into fibrous structures. They can respond to these stimuli, and comprise shape memory materials, temperature-responsive polymers, chromic materials, phase change materials, photothermal materials, among others. The resulting effects can manifest in a variety of ways, from pore adjustments and altered permeability to shape changing, color changing, and thermal regulation. This review aims to explore the realm of fibrous structures, delving into their responsiveness to external stimuli, with a focus on temperature, light, and pH.
近几十年来,人们对响应性纤维结构的兴趣激增,推动它们在各种应用中得到广泛应用:从适应周围环境的可穿戴纺织品到动态改变选择性的过滤膜,这些结构展现出了非凡的多功能性。各种刺激因素,包括温度、光、pH值、电和化合物,都可以作为触发因素,引发相应的物理或化学变化。诸如使用响应性纱线进行编织或针织、静电纺丝以及涂层工艺等加工方法,能够将响应性材料整合到纤维结构中。它们能够对这些刺激做出反应,包括形状记忆材料、温度响应性聚合物、变色材料、相变材料、光热材料等。所产生的效果可以通过多种方式表现出来,从孔隙调节和渗透率改变到形状变化、颜色变化和热调节。本综述旨在探索纤维结构领域,深入研究它们对外部刺激的响应,重点关注温度、光和pH值。