0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Environmental Sources Sign in to save

Scalable and Reconfigurable Green Electronic Textiles with Personalized Comfort Management

ACS Nano 2022 37 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Wei Gong, Yang Guo, Weifeng Yang, Weifeng Yang, Wei Gong, Zhihua Wu, Zhihua Wu, Ruizhe Xing, Jin Liu, Wei Wei, Jie Zhou, Yinben Guo, Kerui Li, Chengyi Hou, Yaogang Li, Qinghong Zhang, Michael D. Dickey, Hongzhi Wang

Summary

Researchers developed scalable and reconfigurable green electronic textiles for personalized thermal comfort management, using sustainable materials and designs that minimize electronic waste generation and address the environmental concerns associated with conventional e-textile manufacturing.

Polymers
Body Systems

Electronic textiles, inherited with the wearability of conventional clothes, are deemed fundamental for emerging wearable electronics, particularly in the Internet of Things era. However, the electronic waste produced by electronic textiles will further exacerbate the severe pollution in traditional textiles. Here, we develop a large-scale green electronic textile using renewable bio-based polylactic acid and sustainable eutectic gallium-indium alloys. The green electronic textile is extremely abrasion resistant and can degrade naturally in the environment even if abrasion produces infinitesimal amounts of microplastics. The mass loss and performance change rates of the reconstituted green electronic textiles are all below 5.4% after going through the full-cycle recycling procedure. This green electronic textile delivers high physiological comfort (including electronic comfort and thermal-moisture comfort), enables wireless power supply (without constraints by, e.g., wires and ports), has 2 orders of magnitude better air and moisture permeability than the body requires, and can lower skin temperature by 5.2 °C.

Sign in to start a discussion.

Share this paper