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sight and sound: liquid crystal polymer-based tactile interfaces for the digital age.” The project aims to create interactive coatings that generate realistic tactile sensations for applications in human
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PhD in Optical Characterization and Photonic Performance Analysis of Liquid Crystal Polymer Coatings
for a motivated PhD candidate to study the optical and photonic performance of advanced liquid crystal polymer coatings for one-way transparency, adaptive camouflage, and smart optical interfaces
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motivated PhD candidate to develop next-generation one-way transparent optical films based on liquid crystal polymer technology. The position is embedded in the research group of Dr. Danqing Liu at Eindhoven
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Application dates Applications close15 July 2026 What you'll receive You'll receive a stipend of $37,010 per annum for a maximum duration of 3.5 years while undertaking a QUT PhD. The duration includes an extension of up to six months if approved for your candidature. This is the full-time, tax...
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of Amsterdam, under the supervision of Prof. Noushine Shahidzadeh (expert on crystallization and sol-gel process in confinement) and Prof. Hannelore Derluyn (expert in micro-CT 3D imaging for porous media
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the production, charge selection, transport, trapping and sympathetic cooling of HCIs inside laser-cooled Ca+ Coulomb crystals, providing the experimental foundation for the project. The work will range from
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Pandora MSCA ITN consortium to investigate how Chromosome 1 (Chr1) AMD risk variants—including the complement factor H CFH Y402H polymorphism—drive intrinsic defects and cell death in photoreceptors, and
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are combined at a certain twist angle between the crystal orientations, an additional periodic modulation of the atomic lattice potential can emerge, often referred to as moiré superlattice. At specific
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technologies aimed at assessing, protecting, and repairing donor livers before transplantation. This PhD project is embedded within the multidisciplinary CRISPR-CRYSTAL consortium, bringing together experts in
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gating. The research will explore how the properties of atomically thin materials can be transformed when different two-dimensional crystals are brought together, creating artificial quantum systems with