EMI shielding and conductive textiles functionalized with (Ti,Cu) nanomaterials for biomedical applications

Author:

Lopes Cláudia1,Ferreira Armando1,Correa Marcio A.1,Rodrigues André Machado1,Mendes Paulo M.2,Vaz Filipe1

Affiliation:

1. Physics Centre of Minho and Porto Universities (CF-UM-UP), University of Minho

2. CMEMS-UMinho, University of Minho

Abstract

Abstract This study explores the potential of integrating thin film technology in the design of new and effective Electromagnetic Interference (EMI) shielding materials for textiles and wearables. This application is of particular interest to the textile industry as it can bring new functionalities to wearables and protect humans from prolonged exposure to EM radiation. Three different thin films of pure Ti, pure Cu and Ti-doped with Cu prepared by magnetron sputtering were used to functionalize textile knits based on cotton (code 39 F) and lyocell fibres (62 I). The films displayed different crystalline structures, morphologies, and topographies, which depended on their chemical compositions. The shielding effectiveness (SE) of the functionalized knits against EMI was evaluated in the frequency range of 2 GHz to 8 GHz. Also, the electrical response under stress was assessed since the electrical conductivity is closely related to the EMI shielding effectiveness. The results demonstrate the feasibility of using a thin conductive layer based on Cu to obtain shield textiles with great adhesion and low thickness, providing superior shielding efficiency for EMI by blocking the electrical waves.

Publisher

Research Square Platform LLC

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