Papers
2
Total Citations
16
H-Index
2
About
Thomas Strunskus is a leading figure in the development of advanced functional materials, with his research primarily centered on soft electronics, polymer composites, and sensor technologies. His major contributions lie in engineering highly stable, flexible conductors and innovative sensing platforms. Notably, his 2023 work on "Strain‐Invariant, Highly Water Stable All‐Organic Soft Conductors" introduced ultralight, multi-layered foam-like structures that maintain conductance under deformation—a critical breakthrough for wearable electronics and soft robotics, garnering 11 citations. More recently, in 2025, he pioneered an "Electret integrated magnetic field sensor based on magnetostrictive polymer composite" achieving nT resolution, a significant advancement for biomedical and automotive applications with 5 citations. Strunskus’s work is distinguished by its focus on real-world durability and precision, bridging the gap between material science and practical device integration. His achievements demonstrate a consistent ability to solve fundamental challenges in soft conductor stability and sensor sensitivity, making his research highly influential for students and researchers exploring next-generation flexible electronics and magnetoelectric systems.
Research Focus
Key Achievements
Top Papers
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