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Your Job: Quantum computers will play a crucial role in the development and optimization of battery materials in the future. In this project, you will develop innovative quantum algorithms
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Infrastructure? No Offer Description Area of research: Promotion Job description: Your Job: Quantum computers will play a crucial role in the development and optimization of battery materials in the future. In
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batteries (RFB), enabling affordable and durable long-duration energy storage. The approach is to use hierarchical structures, i.e. complex material layers that can be optimized to specific battery
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for the electrochemical energy storage and conversion. Aiming to develop sustainable and cost-effective batteries, fuel cells, and electrolyzers with improved energy and power density, longer lifetime at maximal safety is
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to develop new architectures for porous electrodes to improve the power density and energy efficiency of redox flow batteries (RFB), enabling affordable and durable long-duration energy storage. The approach
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inhabitants for decades. Our students also enjoy the green surroundings of the research institutes: parks, lakes, the banks of the Isar river and several beer gardens invite you to recharge your batteries
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enhances battery performance based on process gases and other carbonization parameters. The recruited researcher will investigate the influence of microwave field modes and process parameters (such as time
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motivated researcher to join our team as a PhD candidate in the synthesis of advanced lignin polymer conjugates for 3D printable materials and battery applications. This position is part of the MSCA Joint
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Ionics & Batteries / Bioinspired Materials / Quantum Electronics / Organic Electronics / Ultra-Cold Atomic Gases /… We offer Cutting-edge research projects in a vibrant, interdisciplinary, and
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, material synthesis, catalysis, analysis and characterisation, battery cell, recycling, sustainability and life cycle analysis. Theory and Modelling Theoretical work is conducted on very different length- and