Integrated Janus cellulosic composite with multiple thermal functions for personalized thermal management

IF 10.7 1区 化学 Q1 CHEMISTRY, APPLIED Carbohydrate Polymers Pub Date : 2022-07-15 DOI:10.1016/j.carbpol.2022.119409
Luying Chen , Hainan Zhang , Zhiping Mao , Bijia Wang , Xueling Feng , Xiaofeng Sui
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引用次数: 3

Abstract

The effective integration of multiple thermal functions into one material is highly attractive in personal thermal management, taking the complex application environment into consideration. Herein, a multifunctional Janus cellulosic composite encompassing superior electrical heating, energy storage, thermal insulation, and infrared camouflage performance was firstly developed by integrating Janus cellulose nanofibers (CNF) aerogel, polypyrrole (PPy), and polyethylene glycol (PEG). In practice, the active heating-thermal regulation layer (PPy@CNFphilic-PEG) of multifunctional Janus cellulosic composite is faced inward to provide heating on-demand through the joint action of the electrically conductive PPy and thermally regulative PEG. The outward-facing hydrophobic aerogel layer (CNFphobic) serves as the thermal insulator, which simultaneously enables infrared camouflage by reducing heat loss to the environment via infrared radiation. This work presents an effective and facile strategy toward multifunctional Janus materials for efficient personal thermal management, showing great promise for potential applications, such as thermal comfort, infrared camouflage, and security protection.

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集成Janus纤维素复合材料,具有多种热功能,用于个性化热管理
考虑到复杂的应用环境,将多种热功能有效地集成到一种材料中,在个人热管理中具有很高的吸引力。本文首先通过整合Janus纤维素纳米纤维(CNF)气凝胶、聚吡咯(PPy)和聚乙二醇(PEG),开发了一种多功能Janus纤维素复合材料,具有优异的电加热、储能、隔热和红外伪装性能。在实践中,多功能Janus纤维素复合材料的主动加热-热调节层(PPy@CNFphilic-PEG)面向内,通过导电PPy和热调节PEG的共同作用提供按需加热。向外的疏水气凝胶层(CNFphobic)作为隔热层,同时通过减少红外辐射对环境的热量损失来实现红外伪装。本研究为多功能Janus材料提供了一种高效的个人热管理策略,在热舒适、红外伪装和安全防护等方面显示出巨大的潜在应用前景。
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来源期刊
Carbohydrate Polymers
Carbohydrate Polymers 化学-高分子科学
CiteScore
22.40
自引率
8.00%
发文量
1286
审稿时长
47 days
期刊介绍: Carbohydrate Polymers stands as a prominent journal in the glycoscience field, dedicated to exploring and harnessing the potential of polysaccharides with applications spanning bioenergy, bioplastics, biomaterials, biorefining, chemistry, drug delivery, food, health, nanotechnology, packaging, paper, pharmaceuticals, medicine, oil recovery, textiles, tissue engineering, wood, and various aspects of glycoscience. The journal emphasizes the central role of well-characterized carbohydrate polymers, highlighting their significance as the primary focus rather than a peripheral topic. Each paper must prominently feature at least one named carbohydrate polymer, evident in both citation and title, with a commitment to innovative research that advances scientific knowledge.
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