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◆ Nano Letters2026-03-06· Materials science

MXene-Coated Liquid Metal Elastomers: Permeable, Stretchable, 3D-Printable Electromagnetic Interference Shielding Materials for Electronic Skins

Yi Yang, Qiang Ren, Yuyang Shi, Ruolin Liu, Lieji Yang, Hongtao Guo, Zeyu Zhang, Haiyan Zhuang, Qiong Wu, Bin Yuan, Wei Lu

原始摘要(英文原文)· Original abstract
Permeable, stretchable, and 3D-printable electromagnetic interference (EMI) shielding materials are essential for next-generation electronic skins, yet current materials rarely combine all these attributes. Here, we present a strategy to fabricate multifunctional materials via the phase separation induced porosity (PSIP). In this design, thermoplastic polyurethane (TPU) serves as the stretchable matrix. Gallium-indium-tin liquid metal (LM) microdroplets act as conductive fillers, and MXene nanosheets stabilize the LM interface. The resulting MXene@LM/TPU elastomers exhibit excellent permeability, high stretchability (∼471%), outstanding EMI shielding effectiveness (87.0 dB), and 3D printability for the fabrication of shape-adaptive architectures. Notably, the enhanced permeability does not induce LM leakage or compromise mechanical robustness─challenges in LM-based composites. The percolated network remains stable after 200% cyclic tensile strains, with <1% SE degradation after 500 bending cycles. This work offers a strategy for engineering high-performance EMI shielding materials, promising applications in wearable electronics, soft robotics, and human-interactive devices.
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MXene-Coated Liquid Metal Elastomers: Permeable, Stretchable, 3D-Printable Electromagnetic Interference Shielding Materials for Electronic Skins — 科研速览 Science Skim