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Description: The RevEl project aims to replace PTFE-based dry binders with fluorine-free nanocomposites that combine mechanical robustness during battery operation with controlled debonding-on-demand at end
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– Reversible Electrodes for Resource-Efficient and Circular Energy Storage". Project Description: The RevEl project aims to replace PTFE-based dry binders with fluorine-free nanocomposites that combine
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to the principles of the European Charter for Researchers and the Code of Conduct for the Recruitment of Researchers. Open competition for participation in the project „Chiral nanocomposites with tunable optical
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of lignin nanoparticles (LNPs). A deeper understanding of these processes will enable the design of innovative applications in drug delivery, nanocomposites, and other emerging technologies. Ultimately
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the National Science Foundation to complete the warm commissioning of the new Neutron Spin Echo (NSE) instrument and conduct research along with a doctoral student on polymer nanocomposites. Major
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RSM-based experimental design and regression modeling. Strong record of peer-reviewed publications to the field of advanced cementitious composites and nanocomposites. Ability to work collaboratively
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such as microelectronics and self-assembly of nanocomposites. Therefore, we seek highly motivated candidates to drive the project independently while interacting closely with senior members of the research
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printing Design and development of novel (3D/4D) electronic devices and rechargeable batteries by AM process Nanocomposite formulating, including optimization of compounding procedures, particle loading, and