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用于增强热调节性能的先进功能性纤维材料

Advanced Functional Fibrous Materials for Enhanced Thermoregulating Performance.

作者信息

Pakdel Esfandiar, Naebe Maryam, Sun Lu, Wang Xungai

机构信息

Institute for Frontier Materials , Deakin University , Waurn Ponds Campus, Locked Bag 20000, Geelong , Victoria 3220 , Australia.

出版信息

ACS Appl Mater Interfaces. 2019 Apr 10;11(14):13039-13057. doi: 10.1021/acsami.8b19067. Epub 2019 Apr 1.

Abstract

The concept of thermoregulating textiles capable of providing personal thermal management property (PTM) has attracted significant attention in recent years. It is considered as an emerging approach to promote the comfort and general well-being of wearers and also to mitigate the energy consumption load for indoor living space conditioning. Regulating the heat exchange between human body and environment has been the core subject of many studies on introducing the PTM functionality to textiles. This work provides an overview of the latest literature, summarizing the recent innovations and state-of-the-art approaches of controlling the heat gain and loss of textiles. To this end, methods to control the fundamental aspects of heat gain and loss of fabrics such as using near-infrared reflective materials and conductive nanomaterials, designing photonic structures of fabrics, and engineering nanoporous structures for passive cooling and heating effects will be discussed. Moreover, specific attention is given to the application of phase change materials in textiles, their integration methods, and the associated mechanisms. Several commercial methods such as adapting the innovative designs, introducing moisture management capability, and using air/liquid thermoregulating systems will also be discussed. This review article provides a clear picture of the concept of thermoregulating textiles and recommends some future research trajectories for this emerging field.

摘要

近年来,具备个人热管理特性(PTM)的热调节纺织品概念备受关注。它被视为一种新兴方法,既能提升穿着者的舒适度和整体幸福感,又能减轻室内居住空间空调的能耗负担。调节人体与环境之间的热交换一直是众多将PTM功能引入纺织品研究的核心课题。本文综述了最新文献,总结了控制纺织品热得失的近期创新成果和前沿方法。为此,将讨论控制织物热得失基本方面的方法,如使用近红外反射材料和导电纳米材料、设计织物的光子结构以及构建用于被动冷却和加热效果的纳米多孔结构。此外,还将特别关注相变材料在纺织品中的应用、它们的整合方法及相关机制。还将讨论一些商业方法,如采用创新设计、引入水分管理能力以及使用空气/液体热调节系统。这篇综述文章清晰地阐述了热调节纺织品的概念,并为这一新兴领域推荐了一些未来的研究方向。

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