Talentmate
India
30th July 2025
2507-3577-4
University: Delft University of Technology (TU Delft)
Country: Netherlands
Deadline: 2025-09-14
Fields: Materials Science, Physics, Chemistry, Electrochemistry, Energy Engineering
Are you passionate about advancing sustainable energy technologies and eager to contribute to the next generation of lithium-ion batteries? If you are driven by the desire to develop innovative materials that could revolutionize energy storage, this fully funded PhD position at TU Delft may align perfectly with your academic aspirations and career ambitions.
The transition to a sustainable energy future hinges on breakthroughs in battery technology, and silicon-based anodes represent a promising avenue for significant improvements in lithium-ion battery performance. By joining this research effort, you can play a vital role in addressing global energy challenges while developing highly sought-after expertise in materials science and electrochemistry.
About The University Or Research Institute
Delft University of Technology (TU Delft) is one of Europe’s leading technical universities, renowned for its cutting-edge research and innovative educational programs. Located in Delft, the Netherlands, TU Delft fosters a vibrant academic environment that encourages collaboration across disciplines and with industry partners. The Faculty of Electrical Engineering, Mathematics & Computer Science houses the Electrical Sustainable Energy department, which is at the forefront of research addressing the technical, scientific, and societal challenges of the global energy transition. The department is equipped with state-of-the-art facilities, including the Electrical Sustainable Power (ESP) Laboratory, dedicated to materials development, device fabrication, and advanced characterization.
Research Topic and Significance
The core research focus of this PhD position is the development of silicon-based anodes with engineered interphases for lithium-ion batteries. Silicon is a highly attractive anode material due to its exceptional theoretical capacity, but its practical application is hindered by significant volume changes during cycling and instability at the electrode/electrolyte interface. This project aims to overcome these limitations by developing innovative interphase engineering strategies and advanced deposition techniques, contributing to longer-lasting, higher-capacity batteries.
Also See
Role Level: | Internship | Work Type: | Full-Time |
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Country: | India | City: | Burdwan ,West Bengal |
Company Website: | Phdfinder.com | Job Function: | Clinical & Lab Research |
Company Industry/ Sector: |
Education |
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