来源:Textiles 发布时间:2026/3/12 13:38:54
选择字号:
文献清单:“智能纺织品与可穿戴电子设备”方向 | Textiles

期刊名:Textiles

期刊主页:https://www.mdpi.com/journal/textiles

当衣服不再只是遮体保暖的织物,当电子设备摆脱笨重束缚、融入衣物肌理,一场由“织”与“智”掀起的科技革命,正悄然重塑我们的生活。深耕这一交叉领域,我们总能发现科技赋能生活的无限可能。本期文献清单汇聚 Textiles 期刊近年发表的“智能纺织品与可穿戴电子设备”方向的文献,希望能为您的学术思考和科研工作带来启发。

1. Advances and Applications of Graphene-Enhanced Textiles: A 10-Year Review of Functionalization Strategies and Smart Fabric Technologies

石墨烯增强纺织品的研究进展与应用:功能化策略及智能织物技术的十年回顾

http://www.mdpi.com/2673-7248/5/3/28

Aznar, P.R.D.; Junior, H.L.O. Advances and Applications of Graphene-Enhanced Textiles: A 10-Year Review of Functionalization Strategies and Smart Fabric Technologies. Textiles 2025, 5, 28.

2. A Review of the Structure, Performance, Fabrication, and Impacts of Application Conditions on Wearable Textile GNSS Antennas

可穿戴纺织GNSS天线的结构、性能、制备及应用环境对其影响的综述

http://www.mdpi.com/2673-7248/5/3/35

Wang, R.; Zheng, C.; Tao, Q.; Hu, J. A Review of the Structure, Performance, Fabrication, and Impacts of Application Conditions on Wearable Textile GNSS Antennas. Textiles 2025, 5, 35.

3. Wearable E-Textile Antenna Design for Continuous Monitoring Systems

用于连续监测系统的可穿戴电子纺织天线设计

http://www.mdpi.com/2673-7248/5/1/2

Nguyen, M.P.; Green, R.B. Wearable E-Textile Antenna Design for Continuous Monitoring Systems. Textiles 2025, 5, 2.

4. Design Innovation and Thermal Management Applications of Low-Dimensional Carbon-Based Smart Textiles

低维碳基智能纺织品的设计创新及热管理应用

http://www.mdpi.com/2673-7248/5/3/27

Pan, Y.; Lin, S.; Xue, Y.; Ou, B.; Li, Z.; Zhao, J.; Wei, N. Design Innovation and Thermal Management Applications of Low-Dimensional Carbon-Based Smart Textiles. Textiles 2025, 5, 27.

5. Ultralong Carbon Nanotube Yarns Integrated as Electronic Functional Elements in Smart Textiles

超长碳纳米管纱线作为电子功能元件集成到智能纺织品中

http://www.mdpi.com/2673-7248/5/2/13

Karmon, A.; Topaz, O.; Tandon, R.; Weck, A.; Tiurin, O.; Rafaeli, S.; Weissman, Z. Ultralong Carbon Nanotube Yarns Integrated as Electronic Functional Elements in Smart Textiles. Textiles 2025, 5, 13.

6. Nano-Silica-Modified Hydrophobic PDMS Encapsulation on CNT Thermoelectric Fibers for Waterproof Thermoelectric Textiles

纳米二氧化硅改性疏水性PDMS包覆碳纳米管热电纤维用于防水热电纺织品

http://www.mdpi.com/2673-7248/5/4/52

Zhang, B.; Ma, M.; Wang, S.; Cai, H.; Li, D.; Gu, P. Nano-Silica-Modified Hydrophobic PDMS Encapsulation on CNT Thermoelectric Fibers for Waterproof Thermoelectric Textiles. Textiles 2025, 5, 52.

7. Evaluating the Impact of Laundering on the Electrical Performance of Wearable Photovoltaic Cells: A Comparative Study of Current Consistency and Resistance

洗涤对可穿戴光伏电池电性能的影响评估:电流一致性和电阻的对比研究

http://www.mdpi.com/2673-7248/4/4/28

Talukder, A.; Freeman, C.; Kobia, C.; Burch, R.F.V. Evaluating the Impact of Laundering on the Electrical Performance of Wearable Photovoltaic Cells: A Comparative Study of Current Consistency and Resistance. Textiles 2024, 4, 493-506.

8. Towards Single-Polymer-Based Fully Printed Textile-Based Flexible Ag2O-Zn Battery for Wearable Electronics

面向可穿戴电子设备的全印刷单聚合物基纺织柔性Ag2O-Zn电池

http://www.mdpi.com/2673-7248/4/2/15

Kota, A.; Vallurupalli, K.; Neidhard-Doll, A.T.; Chodavarapu, V.P. Towards Single-Polymer-Based Fully Printed Textile-Based Flexible Ag2O-Zn Battery for Wearable Electronics. Textiles 2024, 4, 256-266.

9. OLEDs on Down-Converting Fabric by Using a High Scalable Planarization Process and a Transparent Polymeric Electrode

基于高可扩展性平坦化工艺和透明聚合物电极在下转换织物上制备OLED

http://www.mdpi.com/2673-7248/4/1/7

Prontera, C.T.; Pugliese, M.; Mariano, F.; Taurino, D.; Giannuzzi, R.; Primiceri, V.; Esposito, M.; Andretta, A.; Gigli, G.; Maiorano, V. OLEDs on Down-Converting Fabric by Using a High Scalable Planarization Process and a Transparent Polymeric Electrode. Textiles 2024, 4, 91-103.

10. Advances in Thermoregulating Textiles: Materials, Mechanisms, and Applications

调温纺织品的研究进展:材料、机理及应用

http://www.mdpi.com/2673-7248/5/2/22

Tang, K.H.D. Advances in Thermoregulating Textiles: Materials, Mechanisms, and Applications. Textiles 2025, 5, 22.

11. Review of Fiber-Reinforced Composite Structures with Multifunctional Capabilities through Smart Textiles

基于智能纺织品的多功能纤维增强复合材料结构综述

http://www.mdpi.com/2673-7248/4/3/23

Chaudhary, B.; Winnard, T.; Oladipo, B.; Das, S.; Matos, H. Review of Fiber-Reinforced Composite Structures with Multifunctional Capabilities through Smart Textiles. Textiles 2024, 4, 391-416.

12. A Review of the Electrical Conductivity Test Methods for Conductive Fabrics

导电织物电导率测试方法综述

http://www.mdpi.com/2673-7248/4/3/17

Xie, Z.; Ventura, H.; Ardanuy, M. A Review of the Electrical Conductivity Test Methods for Conductive Fabrics. Textiles 2024, 4, 284-308.

13. Quantification of Fundamental Textile Properties of Electronic Textiles Fabricated Using Different Techniques

不同工艺制备的电子纺织品基础纺织性能的量化研究

http://www.mdpi.com/2673-7248/4/2/13

M. Shahidi, A.; Marasinghe, K.; Ebrahimi, P.; Wood, J.; Rahemtulla, Z.; Jobling, P.; Oliveira, C.; Dias, T.; Hughes-Riley, T. Quantification of Fundamental Textile Properties of Electronic Textiles Fabricated Using Different Techniques. Textiles 2024, 4, 218-236.

14. Luminescent Wearables for Low-Light Visibility of Children

用于提高儿童弱光能见度的发光可穿戴设备

http://www.mdpi.com/2673-7248/5/4/51

Sofronova, D.; Angelova, R.A. Luminescent Wearables for Low-Light Visibility of Children. Textiles 2025, 5, 51.

15. Evaluation of Resting-State Cooling Effectiveness in Wearable Body-Cooling Devices Using Thermophysiological and Psychological Responses

基于热生理和心理反应评估可穿戴式人体降温设备在静息状态下的冷却效果

https://www.mdpi.com/2673-7248/5/4/69

Maru, H.; Yuasa, T.; Kanai, H. Evaluation of Resting-State Cooling Effectiveness in Wearable Body-Cooling Devices Using Thermophysiological and Psychological Responses. Textiles 2025, 5, 69.

期刊简介

Textiles (ISSN 2673-7248) 创刊于2021年,是一个国际化、经同行评审的开放获取期刊。2024年影响因子为4.9,在JCR纺织材料学科 (Materials Science, Textiles) 中位列Q1分区 (排名第2/31)。该期刊涵盖但不限于以下研究方向:纺织材料、纺织和纤维基复合材料、功能纺织品、智能纺织品、生物纺织品、纺织品制造与加工、纺织技术与管理等。目前,Textiles 期刊已被Scopus、ESCI (Web of Science)、DOAJ、CNKI和EBSCO等数据库收录。

期刊主编:Prof. Dr. Philippe Boisse, Université de Lyon, France

2024 Impact Factor
34.9
Time to First Decision
25.6 Days
Acceptance to Publication
7.5 Days
 
 
 
特别声明:本文转载仅仅是出于传播信息的需要,并不意味着代表本网站观点或证实其内容的真实性;如其他媒体、网站或个人从本网站转载使用,须保留本网站注明的“来源”,并自负版权等法律责任;作者如果不希望被转载或者联系转载稿费等事宜,请与我们接洽。
 
 打印  发E-mail给: 
    
 
相关新闻 相关论文

图片新闻
研究提出中国首次载人登月任务候选着陆点 科学网2026年2月十佳博文榜单公布!
中国科学家创造柔性热电材料新纪录 我国实现小时级不间断高轨星地激光通信
>>更多
 
一周新闻排行
 
编辑部推荐博文