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energy use and minimizing environmental impact. This collaborative effort brings together expertise in materials science, physics, polymer chemistry, and composite mechanics, with a particular emphasis on
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, the focus is on wood science and technology, with research and education on wood materials from nano to macro level, wood composites, and wood adhesives, as well as accredited testing of wood products and
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develop composite materials, design concepts and devices for soft and deformable electronic systems. Areas of special interest are bioelectronics and neural interfaces, stretchable (semi)conductors, energy
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composition, structure, properties and production of materials – mainly metallic and ceramic – as well as application aspects. Project description The main goal of this project is to identify and develop
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synthesis (primarily powder-based bulk synthesis) and realize 2D materials through selective etching. The materials will be characterized with respect to structure and composition (XRD, SEM, EDX, XPS, TEM
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The research will focus on the design of novel composite materials and hydrogels based on biopolymers, nanocellulose, and conjugated polymers. You will work closely with WWSC researchers at Chalmers, KTH, and
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organic semiconductors, polymer blends, and composites. Our research advances new plastic materials for wearable electronics and energy technologies. Collaborations with other universities, research
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society. With unique research expertise, we offer education at the undergraduate and graduate levels, as well as within our international master's programs. The Electronics Materials and Systems Laboratory
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an international team led by Professor Klas Tybrandt and is part of the Laboratory of Organic Electronics (LOE). We develop composite materials, design concepts and devices for soft and deformable
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purification. The postdoc will perform theoretical simulations of 3D/2D materials by primarily Density Functional theory (DFT), for identification of ground state crystal structure, composition and properties