TY - JOUR
T1 - Self-powered textile-integrated electro-tactile interface system for advanced human-computer interaction
AU - Zhao, Yi
AU - Zhai, Wei
AU - Dai, Kun
AU - Liu, Chuntai
AU - Shen, Changyu
AU - Pan, Caofeng
N1 - Publisher Copyright:
© 2025 Elsevier Inc.
PY - 2025/8/6
Y1 - 2025/8/6
N2 - Emerging haptic technologies have attracted growing attention for their capability to emulate sophisticated tactile feedback with high fidelity. However, conventional haptic interfaces typically suffer from bulkiness, limited portability, and dependence on external power supplies, which restrict their integration into wearable systems. In a recent study published in Science Advances, Yu et al. reported the development of a self-powered electro-tactile textile haptic (SPETH) glove—an innovative solution characterized by its lightweight form factor, mechanical flexibility, sustainability, and low manufacturing cost. This SPETH glove leverages triboelectric or piezoelectric energy harvesting mechanisms to enable battery-free operation, representing a significant advancement toward autonomous, user-friendly, and seamlessly integrated haptic feedback systems for next-generation wearable electronics and human-machine interaction.
AB - Emerging haptic technologies have attracted growing attention for their capability to emulate sophisticated tactile feedback with high fidelity. However, conventional haptic interfaces typically suffer from bulkiness, limited portability, and dependence on external power supplies, which restrict their integration into wearable systems. In a recent study published in Science Advances, Yu et al. reported the development of a self-powered electro-tactile textile haptic (SPETH) glove—an innovative solution characterized by its lightweight form factor, mechanical flexibility, sustainability, and low manufacturing cost. This SPETH glove leverages triboelectric or piezoelectric energy harvesting mechanisms to enable battery-free operation, representing a significant advancement toward autonomous, user-friendly, and seamlessly integrated haptic feedback systems for next-generation wearable electronics and human-machine interaction.
UR - https://www.scopus.com/pages/publications/105012287636
U2 - 10.1016/j.matt.2025.102280
DO - 10.1016/j.matt.2025.102280
M3 - 评论/辩论
AN - SCOPUS:105012287636
SN - 2590-2393
VL - 8
JO - Matter
JF - Matter
IS - 8
M1 - 102280
ER -