KENTECH 에너지공학부, 탄소중립달성 기술 연구실
<연구원 및 석박사 대학원생 모집 공고>
저희 탄소중립달성 기술 연구실 (TAN LAB) 에서 함께 연구하고자
하시는 연구원 및 석박사과정 학생 지원자 분들은 jeiwan@kentech.ac.kr로 연락주시기 바랍니다.
Our Vision - "Pioneering Sustainable Solutions for a Net-Zero Future"
At the Technology for Achieving Net-zero (TAN) Lab, our mission is to realize a carbon-neutral society through the innovation of advanced materials and the optimization of electrochemical technologies. We bridge the gap between fundamental material science and practical energy systems to address global energy challenges.
Our roadmap to carbon neutrality consists of three interconnected stages:
1. Advanced Material Synthesis
• Synthesis of New Materials: We focus on the design and synthesis of next-generation catalysts and electrode materials.
• Atomic-Level Engineering: By precisely controlling material structures at the atomic and molecular levels, we aim to discover novel candidates that offer superior electrochemical activity and durability, serving as the foundation for breakthrough energy technologies.
2. Device Design & Assembly
• From Fundamental to Practical Application: We translate our material innovations into tangible, high-efficiency electrochemical devices.
• Engineering & Optimization: Our work involves the precise assembly of electrochemical cells and stacks. We employ rigorous testing and engineering feedback loops to optimize device architecture, ensuring that the intrinsic properties of our materials are fully realized in practical operating conditions.
3. System-level Integration
• Renewable Energy Integration: The ultimate goal of TAN LAB is to integrate our electrochemical devices with renewable energy sources, such as solar energy.
• Sustainable Chemical Production: We aim to build comprehensive energy systems capable of:
o Green Hydrogen Production: Generating clean hydrogen via water electrolysis.
o Carbon Resource Utilization: Directly converting CO2 into valuable carbon fuels and chemicals.
o Waste-to-Value Conversion: Upcycling biogas and organic waste into value-added chemicals through oxidation reactions.
Through this multi-scale approach, TAN LAB is committed to developing energy storage devices and conversion systems that reduce carbon footprints and drive the transition toward a sustainable energy economy.