Bluesky Facebook Reddit Email

Advances in electrospun nanofiber composites for physical, physiological, and biofluid signal monitoring

09.02.25 | Shanghai Jiao Tong University Journal Center

Apple iPhone 17 Pro

Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.


A research team led by Si Cheng from Soochow University and collaborators have provided a comprehensive review of electrospun nanofiber-based composite materials for wearable electronic skin (E-skin) applications. Published in Nano-Micro Letters , the study highlights how electrospinning technology and composite design strategies are shaping next-generation flexible sensors for monitoring human physical, physiological, and body fluid signals.

Why Electrospun Nanofibers Matter

Electrospun nanofibers combine high surface area, tunable porosity, mechanical flexibility, and breathability, making them ideal scaffolds for wearable sensors. By integrating these one-dimensional fibers with functional materials such as hydrogels, aerogels, and metals, researchers have achieved composites with enhanced electrical, mechanical, and sensing performance. These hybrid structures mimic skin-like properties while enabling efficient signal transduction for human–machine interaction and health monitoring.

Design Strategies and Composite Architectures

The review outlines electrospinning methods—including far-field, near-field, and melt electrospinning—alongside diverse fiber morphologies such as core–shell, porous, hollow, and Janus structures. Functionalization approaches (mixing, coating, in situ growth/polymerization, and carbonization) further expand nanofiber versatility. Three main composite systems are emphasized:

Applications in Human Signal Monitoring

Electrospun nanofiber composites have been applied to a wide spectrum of monitoring tasks:

Challenges and Future Prospects

Key challenges include balancing sensitivity and dynamic range, reducing power consumption for continuous monitoring, improving long-term mechanical stability, and ensuring biocompatibility. Emerging directions emphasize recyclable and sustainable materials, self-healing structures, and seamless integration with wireless and artificial intelligence systems for real-time data interpretation.

Outlook

This review establishes electrospun nanofiber composites as a versatile platform for multifunctional, skin-inspired electronics. By uniting structural tunability with material hybridization, they pave the way for next-generation wearable sensors capable of advancing personalized healthcare, intelligent robotics, and human–machine interfaces.

Stay tuned as researchers continue to innovate in nanofiber design and multifunctional sensing to bring flexible, high-performance E-skin systems closer to practical application.

Nano-Micro Letters

10.1007/s40820-025-01804-2

News article

Recent Progress of Electrospun Nanofiber-Based Composite Materials for Monitoring Physical, Physiological, and Body Fluid Signals

18-Jun-2025

Keywords

Article Information

Contact Information

Bowen Li
Shanghai Jiao Tong University Journal Center
qkzx@sjtu.edu.cn

Source

How to Cite This Article

APA:
Shanghai Jiao Tong University Journal Center. (2025, September 2). Advances in electrospun nanofiber composites for physical, physiological, and biofluid signal monitoring. Brightsurf News. https://www.brightsurf.com/news/LKNW6KEL/advances-in-electrospun-nanofiber-composites-for-physical-physiological-and-biofluid-signal-monitoring.html
MLA:
"Advances in electrospun nanofiber composites for physical, physiological, and biofluid signal monitoring." Brightsurf News, Sep. 2 2025, https://www.brightsurf.com/news/LKNW6KEL/advances-in-electrospun-nanofiber-composites-for-physical-physiological-and-biofluid-signal-monitoring.html.