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This project aims to develop a new generation of 3D printed smart sensors that can be integrated into technical textiles or structural components and are capable of real-time detection of toxic gases, mechanical deformation, and thermal variations, in order to improve personal safety and monitoring in hazardous environments.
Job Responsibility:
Develop printable polymer formulations suitable for additive manufacturing
Incorporate functional fillers (MOFs, conductive nanoparticles) into polymer matrices
Design multi-material printed architectures with localized sensing zones
Optimize 3D printing processes (DIW, extrusion) and morphology control
Investigate electro-mechanical, piezoresistive, and piezoelectric properties of the sensors
Evaluate detection of toxic gases (VOCs, CO, solvents, fumes)
Integrate the sensors into technical textiles or lightweight structures and validate durability and performance under realistic conditions
Requirements:
MSc in Materials Engineering, Chemical Engineering, Mechanical Engineering, or Biomedical Engineering
Interest in additive manufacturing, functional polymers, and nanomaterials (MOFs)
Strong motivation for experimental research and innovation
What we offer:
Training in innovation and technology transfer
Opportunities to collaborate with industrial partners