Tobias Cramer

University of Bologna

Papers

2

Total Citations

12

H-Index

2

About

Tobias Cramer’s research sits at the nexus of soft bioelectronics, nanomechanics, and stretchable electronics—fields critical for the next generation of wearable devices and biomedical implants. His major contributions center on understanding how materials fail and deform at the nanoscale when integrated into flexible, conductive systems. In his highly cited 2022 work, *In-situ force microscopy to investigate fracture in stretchable electronics*, Cramer pioneered a method to simultaneously map surface mechanics and electrical conductivity during deformation, revealing how defects nucleate and propagate in stretchable conductors. This work, with 8 citations, provides foundational insights for designing more robust wearable electronics and soft actuators. His 2023 study, *In Situ Nanomechanical Characterization Techniques for Soft Bioelectronic Interfaces*, extends this approach to bioelectronic interfaces, offering a toolkit for characterizing the mechanical stability of minimally invasive implants. By combining atomic force microscopy with electrical measurements, Cramer’s work directly addresses the critical challenge of device longevity in vivo—ensuring that soft electronics can withstand physiological motion without tissue damage. His research is shaping how engineers design durable, high-performance interfaces for long-term biomedical monitoring and stimulation.

Research Focus

Key Achievements

2
H-Index
2
Papers
12
Total Citations
6
Avg Citations/Paper
🏆 Most Cited Paper
In-situ force microscopy to investigate fracture in stretchable electronics: insights on local surface mechanics and conductivity
8 citations · 2022
📈 Most Prolific Year: 2022 (1 Papers)
🤝 Key Collaborators: 4
🏛 Institutions: University of Bologna

Top Papers

  1. 1
  2. 2

Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago