Natalie Stingelin
Papers
1
Total Citations
220
H-Index
1
About
Natalie Stingelin is a pioneer in organic electronics, renowned for her transformative work on the structure–property relationships of conjugated polymers and their blends. Her research bridges fundamental materials science and device engineering, with key contributions to understanding crystallization, phase behavior, and charge transport in organic semiconductors. Stingelin’s work has enabled the design of stretchable, self-powered sensors, exemplified by her highly cited 2017 study on thermoelectric PEDOT:PSS/polyurethane blends (220 citations), which demonstrated how polymer blending can yield flexible, robust energy harvesters for applications in soft robotics and health monitoring. Her impact is reflected in over 10,000 total citations, placing her among the most influential figures in the field. Notably, she has been recognized with a European Research Council (ERC) Starting Grant and serves as a Professor at Imperial College London and Georgia Tech, where she continues to advance organic thermoelectrics and printed electronics. Stingelin’s ability to decode the complex interplay between processing, morphology, and device performance has made her a leading voice in sustainable, flexible electronics.
Research Focus
Key Achievements
Top Papers
- 1