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May 9, 2026Advanced Functional MaterialsOpen Access

Transfer Printing and Reconfiguration of Soft Electronics Using Digital Microfluidics and Laser Machining

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Authors

QNQuang Anh NguyenCNChi Cong NguyenTDTran Bach Dang

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Overview

Demonstrates transfer printing of 2D nanomembranes in soft electronics, suggesting new applications in biomedical fields.

Key Points

  • To develop a novel droplet-based transfer printing method for ultrathin semiconductor nanomembranes without needing a detachable donor membrane.
  • Utilized a preload-free droplet transfer printing strategy combining rapid laser patterning and digital microfluidics.
  • Implemented liquid surface tension and droplet actuation with ferromagnetic microbeads for precise positioning on various substrates.
  • Performed demonstrations with different device classes for active, reconfigurable sensors.
  • Achieved contamination-free transfer of nanomembranes with intimate conformal contact on 3D surfaces.
  • Successfully integrated the technology into devices like soft electrodes and microprisms for advanced applications.
  • Showed potential for versatile use in flexible bio-integrated electronics systems.

Cite This Study

Nguyen et al. (2026) studied this question.

synapsesocial.com/papers/69fed03cb9154b0b82877535https://doi.org/10.1002/adfm.75773
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