Harvard Medical School and Wellman Center for Photomedicine, Massachusetts General Hospital , 65 Landsdowne Street, Cambridge, Massachusetts 02139, United States.
Harvard-MIT Division of Health Sciences and Technology, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.
ACS Nano. 2016 Mar 22;10(3):3042-68. doi: 10.1021/acsnano.5b08176. Epub 2016 Feb 26.
Increasing customer demand for durable and functional apparel manufactured in a sustainable manner has created an opportunity for nanomaterials to be integrated into textile substrates. Nanomoieties can induce stain repellence, wrinkle-freeness, static elimination, and electrical conductivity to fibers without compromising their comfort and flexibility. Nanomaterials also offer a wider application potential to create connected garments that can sense and respond to external stimuli via electrical, color, or physiological signals. This review discusses electronic and photonic nanotechnologies that are integrated with textiles and shows their applications in displays, sensing, and drug release within the context of performance, durability, and connectivity. Risk factors including nanotoxicity, nanomaterial release during washing, and environmental impact of nanotextiles based on life cycle assessments have been evaluated. This review also provides an analysis of nanotechnology consolidation in the textiles market to evaluate global trends and patent coverage, supplemented by case studies of commercial products. Perceived limitations of nanotechnology in the textile industry and future directions are identified.
随着客户对可持续方式生产的耐用和功能性服装的需求不断增加,为将纳米材料整合到纺织基材中创造了机会。纳米组件可以在不影响纤维的舒适性和灵活性的情况下,为纤维带来抗污、免烫、静电消除和导电性。纳米材料还为创建能够通过电、颜色或生理信号感应和响应外部刺激的互联服装提供了更广泛的应用潜力。本文综述了与纺织品集成的电子和光子纳米技术,并展示了它们在显示器、传感和药物释放方面的应用,同时考虑了性能、耐久性和连接性。还评估了包括纳米毒性、洗涤过程中纳米材料释放以及基于生命周期评估的纳米纺织品的环境影响在内的风险因素。本文还对纺织品市场中的纳米技术整合进行了分析,以评估全球趋势和专利覆盖情况,并辅以商业产品的案例研究。确定了纳米技术在纺织行业中的局限性和未来发展方向。