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241007s2024 xx |||||o 00| ||eng c |
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|a 10.1002/adma.202411131
|2 doi
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|a pubmed25n1261.xml
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|a DE-627
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|a eng
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|a Wu, Peiqi
|e verfasserin
|4 aut
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|a A Robust Core-Shell Nanofabric with Personal Protection, Health Monitoring and Physical Comfort for Smart Sportswear
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|c 2024
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|a Text
|b txt
|2 rdacontent
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|a ƒaComputermedien
|b c
|2 rdamedia
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|a ƒa Online-Ressource
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|2 rdacarrier
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|a Date Completed 25.11.2024
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|a Date Revised 25.11.2024
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|a published: Print-Electronic
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|a Citation Status MEDLINE
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|a © 2024 Wiley‐VCH GmbH.
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|a Smart textiles with a high level of personal protection, health monitoring, physical comfort, and wearing durability are highly demanded in clothing for harsh application scenarios, such as modern sportswear. However, seamlessly integrating such a smart clothing system has been a long-sought but challenging goal. Herein, based on coaxial electrospinning techniques, a smart non-woven textile (Smart-NT) integrated with high impact resistance is developed, multisensory functions, and radiative cooling effects. This Smart-NT is comprised of core-shell nanofibers with an ionic conductive polymer sheath and an impact-stiffening polymer core. The soft smart textile, with a thickness of only 800 µm, can attenuate over 60% of impact force, sense pressure stimulus with sensitivity up to 201.5 kPa-1, achieve temperature sensing resolution of 0.1 °C, and reduce skin temperature by ≈17 °C under a solar intensity of 1 kW m-2. In addition, the stretchable Smart-NT is highly durable and robust, retaining its multifunction features over 10 000 bending and multiple washing cycles. Finally, application scenarios are demonstrated for real-time health monitoring, body protection, and physical comfort of smart sportswear based on Smart-NT for outdoor sports. The strategy opens a new avenue for seamless integration of smart clothing systems
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|a Journal Article
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|a anti‐impact
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|a core‐shell nanofabric
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|a multisensory
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|a radiative cooling
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|a smart textile
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|a Polymers
|2 NLM
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1 |
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|a Gu, Jianfeng
|e verfasserin
|4 aut
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1 |
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|a Liu, Xue
|e verfasserin
|4 aut
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1 |
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|a Ren, Yichen
|e verfasserin
|4 aut
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1 |
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|a Mi, Xiaoqian
|e verfasserin
|4 aut
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|a Zhan, Weiqing
|e verfasserin
|4 aut
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|a Zhang, Xinmin
|e verfasserin
|4 aut
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1 |
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|a Wang, Huihui
|e verfasserin
|4 aut
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1 |
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|a Ji, Xinyi
|e verfasserin
|4 aut
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|a Yue, Zhao
|e verfasserin
|4 aut
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|a Liang, Jiajie
|e verfasserin
|4 aut
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|i Enthalten in
|t Advanced materials (Deerfield Beach, Fla.)
|d 1998
|g 36(2024), 47 vom: 06. Nov., Seite e2411131
|w (DE-627)NLM098206397
|x 1521-4095
|7 nnas
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|g volume:36
|g year:2024
|g number:47
|g day:06
|g month:11
|g pages:e2411131
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|u http://dx.doi.org/10.1002/adma.202411131
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