Skip to main navigation Skip to search Skip to main content

DermalECG: Multifunctional Organohydrogel for Real-Time ECG Monitoring and Wound Healing on Burned Skin

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Electrocardiogram (ECG) monitoring is vital for the early detection of cardiovascular diseases. However, conventional electrodes are unsafe for recording ECG signals on thermally damaged skin, making it difficult to assess heart rate and other vital signs in burn patients. Therefore, this study presents a multifunctional organohydrogel-based DermalECG electrode, synthesized via a freeze-thaw process that integrates tannic acid, carboxymethyl chitosan, and galinstan liquid metal into a polyvinyl alcohol network. The DermalECG electrode exhibits exceptional biocompatibility, high electrical conductivity (1.80 S/m), remarkable mechanical strength (up to 818% strain), self-adhesion (<20 kPa), and environmental stability (−20°C–50°C). Leveraging these characteristics, it consistently records ECG signals from various skin conditions, especially burned skin and at extreme temperatures, with a high signal-to-noise ratio of ∼33 dB. As a multifunctional capability, this electrode not only monitors ECG from the burned skin but also actively accelerates burn wound healing. With fast wound healing, we achieve an 87.39% wound closure ratio within a remarkably short period of 10 days. Consequently, the unique combination of properties and functionalities of the DermalECG electrode is poised to play a significant role in advancing ECG electrodes for long-term and continuous healthcare monitoring. © 2026 Wiley-VCH GmbH.
Original languageEnglish
Article numbere05887
JournalAdvanced Healthcare Materials
Online published24 Apr 2026
DOIs
Publication statusOnline published - 24 Apr 2026

Funding

This work was supported by the City University of Hong Kong (Nos. 7006082, 9609332, 9609333, 9678292, and 7020110), the Research Grants Council (RGC) (Nos. 9043805 and 8799020), the Hong Kong Center for Cerebrocardiovascular Health Engineering (COCHE), Innovation and Technology Commission (No. PRP/001/22FX), the Hetao Shenzhen-Hong Kong Science and Technology Innovation Cooperation Zone Shenzhen Park Project (No. HZQB-KCZYZ-2021017), and the Education Bureau Gifted Education Program (No. 3030780).

Research Keywords

  • burned skin
  • cardiovascular diseases
  • electrocardiogram
  • multimodal sensing
  • organohydrogel

RGC Funding Information

  • RGC-funded

Fingerprint

Dive into the research topics of 'DermalECG: Multifunctional Organohydrogel for Real-Time ECG Monitoring and Wound Healing on Burned Skin'. Together they form a unique fingerprint.

Cite this