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technologies that enable cleaner and more sustainable industrial water use. As a PhD candidate, you will develop novel nanometer-thin polymer coatings, known as polymer brushes, that can control surface
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the fundamentals of bonding glass or metals to silicon nitride coated silicon wafers as well as accessing the feasibility of using these bonding methods for MEMS-based microfluidic sensor packaging
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multiscale simulations and AI predict how a breathable material knows when to seal? In this PhD project, you will develop responsive MOF-peptide coatings for adaptive surface functionalization and derive
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focus on microfluidic channels with a channel wall of low-stress silicon-rich silicon nitride. The proposed research aims to study the fundamentals of bonding glass or metals to silicon nitride coated
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of optical coatings and perovskite tandem devices
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Can spectroscopy reveal how a breathable material knows when to seal? In this PhD project, you will develop responsive MOF-peptide coatings for adaptive protection and follow their chemistry in real
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this PhD project, you will develop responsive MOF-peptide coatings for adaptive protection and follow their chemistry in real time. You will combine porous-material synthesis, thin-film preparation and in
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nephrology. What will you do? Design and optimise a transcutaneous vascular access port Develop and test biomaterials and surface coatings with a focus on hemocompatibility Perform in vitro experiments
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advanced biomaterials, medical technology and clinical nephrology. What will you do? Design and optimise a transcutaneous vascular access port Develop and test biomaterials and surface coatings with a focus
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the end-of-life of polymers more sustainable. Structure-property relationships of the resulting polymers are evaluated in several fields of application e.g. stimuli-responsive polymers, coatings, fibres