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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
, biotechnology, and additive manufacturing. As a PhD student, you will investigate fungal-bacterial interactions, develop living bio-composites based on microbial biomineralization, design bio-based hydrogel
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, hydrogels or 3D biological models. What are we looking for in you? You work independently, precisely and systematically, while asking for input when appropriate. You have strong practical and analytical
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, scaffolds, hydrogels or 3D biological models. What are we looking for in you? You work independently, precisely and systematically, while asking for input when appropriate. You have strong practical and
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English.). Meritorious research experience Electrolytes, hydrogels, ionogels, eutectogels, or other polymer electrolyte systems. Redox chemistry, batteries, redox-flow batteries, or other electrochemical
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predict how to implement learning in soft matter, as Physarum’s responsiveness in wall visco-elasticity has its soft matter twin in synthetic hydrogels. Requirements As a suitable candidate, you have a
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nanocomposites, hydrogels and glasses. In nanophysics and applied nanotechnology, our research addresses quantum transport in nanoscale systems, nanomaterials characterization, molecular electronics and
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polymers), hydrogels, and covalent organic frameworks (COFs). One project involves an original system that harvests water energy from nature (e.g., rain and rivers) and directly generates electricity by
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formulations (e.g. hydrogels). Lithography for multiscale hierarchical 3D substrates, e.g. 3D nanoimprint, 3D deep UV or 3D X-ray lithography. Bottom-up tissue engineering based on micro and nanoengineered
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formulations (e.g. hydrogels). Lithography for multiscale hierarchical 3D substrates, e.g. 3D nanoimprint, 3D deep UV or 3D X-ray lithography. Bottom-up tissue engineering based on micro and nanoengineered
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | about 2 months ago
cell-matrix communication in human-relevant experimental settings. To achieve this, we will develop bioengineered platforms that combine cell-laden bioinstructive hydrogels, advanced 3D culture systems