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PhD Scholarship This project aims to develop a novel computational framework for design of stretchable mechanical structures with tailored, exceptional performance. Project outline: This project
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support the development and integration of soft, flexible, and stretchable electronic materials and devices. The role centres on the design, fabrication, and characterisation of soft functional materials
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develop soft, stretchable interconnect technologies for next-generation stretchable and flexible electronic devices. The role focuses on the design, fabrication, and reliability of conductive interconnects
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, stretchable and wearable sensing devices. Support the development of SAW, PMUT and MEMS-based sensing technologies where applicable. Perform device fabrication, prototyping, integration and laboratory testing
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electronics, and nano-engineered sensing technologies. You will work on the development of flexible and stretchable sensing platforms for pressure, strain, bending, and tactile sensing. The project will involve
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novel stretchable conductive polymer composites to be integrated in robotic arms as magnetic tactile sensing skins. In this project, you will: Review the literature on the potentials and limitations
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characterise stretchable devices, and implement them in ultra-compliant circuitry and soft bioelectronic interfaces. Our field of applications ranges from neuroelectronic devices for neuroprosthetics
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energy harvesting from the motion of heart, power management, wireless communication, and recording of cardiac activities. The proposed system utilizes a stretchable transducer that converts the movement
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. Working closely with materials and sensor experts, you will integrate CMOS chips with flexible or stretchable capacitive, piezoelectric or piezoresistive sensor arrays. You will take designs from
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design, embedded electronics, measurement setups or laboratory characterization techniques Experience with microfabrication, flexible/stretchable electronics, and polymer integration is a plus. Experience