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April 5, 2026International Journal of Clothing Science and Technology0 citations

Development and preliminary evaluation of copper-plated knitted fabrics for potential wrist-based skin temperature monitoring

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WTWujun TangHCHyeon-seon ChoSKSumin Helen Koo

Key Points

  • This research aims to create electroless copper-plated fabrics suitable for wrist-based skin temperature monitoring and assess their physical properties.
  • Two types of polyurethane-blended single-jersey knitted fabrics were copper-plated.
  • Various properties were measured, including copper add-on, thickness, and electrical conductivity.
  • A non-functional wristband prototype was made from the plated fabric and user surveys collected feedback on comfort and design.
  • The copper plating effectively enhanced the fabrics' electrical conductivity.
  • User feedback indicated positive responses regarding usability and comfort of the wristband prototype.

Abstract

Purpose This study aims to develop electroless copper-plated knitted fabrics as candidate substrates for wrist-based skin temperature monitoring and to evaluate their physical properties together with a non-functional wristband shell in a preliminary user study. Design/methodology/approach Two polyurethane (PU)-blended single-jersey knitted fabrics, viscose/PU (VIPU) and polyester/PU (PSPU), were electrolessly copper-plated. Copper add-on, thickness, electrical conductivity, surface morphology and thermal behavior under a constant-temperature heating stage were measured. A wristband shell was then constructed from the plated fabric as a non-functional prototype without integrated sensing circuitry, and a small user survey was conducted to collect basic feedback on usability, comfort and design. Findings Two polyurethane (PU)-blended single-jersey knitted fabrics, viscose/PU (VIPU) and polyester/PU (PSPU), were electrolessly copper-plated. Copper add-on, thickness, electrical conductivity, surface morphology and thermal behavior under a constant-temperature heating stage were measured. A wristband shell was then constructed from the plated fabric as a non-functional prototype without integrated sensing circuitry, and a small user survey was conducted to collect basic feedback on usability, comfort and design. Originality/value This study applies electroless copper plating to two polyurethane-blended single-jersey knitted fabrics and examined how metallization affected their structural, electrical and thermal behavior. A wristband prototype was then constructed using the plated fabric and evaluated for usability, comfort and design-related satisfaction. These results provide early, application-oriented evidence for using copper-plated knitted fabrics as elastic substrates for wrist-based skin temperature monitoring.

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Cite This Study

Tang et al. (2026) studied this question.

synapsesocial.com/papers/69d1fcd4a79560c99a0a2787https://doi.org/10.1108/ijcst-07-2025-0132
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