Foundation for Research and Technology
One (1) post-doctoral researcher position in INERRANT project_Integrating Novel matERials with scalable processes for safer and recyclAble Li-ioN baTteries
접수중2025.09.10~2025.09.20
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접수 기간
2025.09.10 00:00~2025.09.20 11:59
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The Institute of Electronic Structure and Laser of the Foundation for research and Technology Hellas (IESL -FORTH), in the framework of the project INERRANT, (Call: HORIZON-CL5-2023-D2-02, GA 101147457 ) Funded under HORIZON-RIA - HORIZON Research and Innovation Actions, is seeking to recruit one (1) post-doctoral researcher.
Job Description
The main aim of INERRANT is to drive genuine advancements for safe-and-sustainable-by-design materials, to ensure the economical and widespread utilization of safer LIBs in modern society. To realize this, INERRANT is formulating a holistic approach to enhance safety, boost performance and improve fast charging, of Gen 3 LIBs tailored for mobility applications. The pivotal S&T challenges encompass: development of functional materials, design sustainable fabrication and recycling processes and understanding of pertinent interfacial phenomena and degradation mechanisms. Specifically, INERRANT aims to pioneer: (i) innovative (nano)materials combinations for anodes and cathodes; (ii) nanofiber-based architectures for smart-functioning separators able to protect battery flaws; (iii) stimuli responsive electrolyte formulations designed for rapid reactions against external disturbances and mitigate degradation processes at the cathode; (iv) cutting-edge and eco-friendly recycling processes to improve the purity of recovered materials from end-of-life LIBs.
One of the objectives of the project is to develop novel electrolyte formulations to enhance battery safety and performance by improving the impact resistance and mitigate degradation of cathode materials. One of the main directions towards this goal is via the development of safe impact resistant electrolytes that possess a discontinuous shear thickening behavior at low particle concentration. The mechanical response of Gen 3 LIB electrolytes with various additives, will be explored to achieve optimal shear thickening (ST), maintaining or improving electrical conductivity of the composite electrolyte.
Within this framework the selected candidate will explore the rheological properties of complex composite suspensions and yield stress fluids with varying colloidal shapes (sphere, rods, platelets) and interactions, aiming to design impact resistant electrolytes for Li-ion Batteries. Our research plan will include a combination of state-of-the-art rheometry and imaging/microscopy and/or scattering probes (such as rheo-confocal microscopy and light scattering under shear). These will enable us to unravel links between rheological properties with microstructure and particle dynamics. Rheological measurements will also be complemented with in-situ conductivity measurements that will allow further fine-tuning structure and mechanical properties in conjunction with electric properties of the electrolyte suspension.
근무 예정지
대표Foundation for Research and Technology(해외) : Nikolaou Plastira 100, Vassilika Vouton, Heraklion, Crete
해외(그리스) : Greece, FORTH-IESL
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기관 정보
Foundation for Research and Technology
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대학교(해외)
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30 281 039 1500
대표주소
Nikolaou Plastira 100, Vassilika Vouton, Heraklion, Crete
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