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环保型导电水凝胶:迈向绿色可穿戴电子设备

Eco-Friendly Conductive Hydrogels: Towards Green Wearable Electronics.

作者信息

Calderón Moreno José María, Chelu Mariana, Popa Monica

机构信息

"Ilie Murgulescu" Institute of Physical Chemistry, 202 Splaiul Independentei, 060021 Bucharest, Romania.

出版信息

Gels. 2025 Mar 21;11(4):220. doi: 10.3390/gels11040220.

Abstract

The rapid advancement of wearable electronics has catalyzed the development of flexible, lightweight, and highly conductive materials. Among these, conductive hydrogels have emerged as promising candidates due to their tissue-like properties, which can minimize the mechanical mismatch between flexible devices and biological tissues and excellent electrical conductivity, stretchability and biocompatibility. However, the environmental impact of synthetic components and production processes in conventional conductive hydrogels poses significant challenges to their sustainable application. This review explores recent advances in eco-friendly conductive hydrogels used in healthcare, focusing on their design, fabrication, and applications in green wearable electronics. Emphasis is placed on the use of natural polymers, bio-based crosslinkers, and green synthesis methods to improve sustainability while maintaining high performance. We discuss the incorporation of conductive polymers and carbon-based nanomaterials into environmentally benign matrices. Additionally, the article highlights strategies for improving the biodegradability, recyclability, and energy efficiency of these materials. By addressing current limitations and future opportunities, this review aims to provide a comprehensive understanding of environmentally friendly conductive hydrogels as a basis for the next generation of sustainable wearable technologies.

摘要

可穿戴电子产品的迅速发展推动了柔性、轻质且高导电性材料的开发。其中,导电水凝胶因其类似组织的特性而成为有前景的候选材料,这些特性能够最大程度减少柔性设备与生物组织之间的机械不匹配,同时具备出色的导电性、拉伸性和生物相容性。然而,传统导电水凝胶中合成成分和生产工艺对环境的影响给其可持续应用带来了重大挑战。本综述探讨了用于医疗保健的环保型导电水凝胶的最新进展,重点关注其在绿色可穿戴电子产品中的设计、制造及应用。着重介绍了使用天然聚合物、生物基交联剂和绿色合成方法来提高可持续性,同时保持高性能。我们讨论了将导电聚合物和碳基纳米材料纳入环境友好型基质的情况。此外,本文还强调了提高这些材料的生物降解性、可回收性和能源效率的策略。通过解决当前的局限性和未来的机遇,本综述旨在全面了解环保型导电水凝胶,为下一代可持续可穿戴技术奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccc0/12026593/c995822e648b/gels-11-00220-g004.jpg

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