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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
to pioneering research at the interface of materials science, biotechnology, and additive manufacturing. As a PhD student, you will investigate fungal-bacterial interactions, develop living bio-composites based
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, perfluorosulfonic acid polymer membranes, such as Nafion, dominate commercial devices. Despite their success, these membranes suffer from several intrinsic limitations, including high material cost, reliance
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analysis. Correlate MNP burden and polymer composition with fibrosis stage and clinical severity. The project offers immediate access to patient samples (biobanked), human organoid models and state
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electronic materials. Polymer composites, functional soft materials, membranes, separators, or other materials for electrochemical devices. Electrical and ionic transport characterization in functional
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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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and predictive design framework for thin-film composite mixed-matrix membranes (TFC-MMMs). The primary objective is to design TFC-MMMs capable of efficient high-pressure gas separation for carbon
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to depolymerization mixture thermodynamics, and relate composition to separation energy/cost for techno-economic assessment. Your work will be done in close collaboration with quantum chemists, reaction engineers, MD
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hours to days. Polymer-based solid state batteries (SSBs) represent a broad field of research for catalysis research. Analysis and Characterisation Individual molecular and solid materials as