Chatrawee Scheiger
Papers
1
Total Citations
9
H-Index
1
About
Chatrawee Scheiger is a pioneering researcher at the intersection of materials science and artificial intelligence, whose work focuses on the rational design and synthesis of conductive metal-organic frameworks (MOFs). Her key research areas include Dirac-cone physics in MOFs, robotic synthesis, and machine-learning-driven materials discovery. Scheiger’s most notable contribution is the demonstration that Cu₃(HHTP)₂, a high-quality MOF thin film fabricated via ML-driven robotic synthesis, exhibits Dirac-cone-induced metallic conductivity—a breakthrough that challenges the conventional insulating nature of MOFs. This work, published in 2025 and already garnering 9 citations, highlights her ability to integrate autonomous experimentation with fundamental quantum materials theory. By showing that tailoring the Dirac cone’s energy can yield a new class of highly conductive, metallic MOFs, Scheiger has opened a pathway toward next-generation electronic devices, sensors, and energy-storage materials. Her achievements underscore the transformative potential of combining automated synthesis with advanced computational screening, positioning her as a leading voice in the emerging field of AI-accelerated materials design.
Research Focus
Key Achievements
Top Papers
- 1