Papers

2

Total Citations

24

H-Index

2

About

F. Albertini is a pioneering researcher at the intersection of unconventional computing, smart materials, and bio-inspired engineering. Their work is defined by two distinct yet innovative threads: the manipulation of ferromagnetic shape-memory alloys and the exploitation of living organisms for computational patterning. Albertini’s most cited study, “Microfabricated ferromagnetic-shape-memory Heuslers: The geometry and size effects” (2021, 13 citations), investigates how micro-scale geometry influences the performance of Heusler alloys—materials that change shape under magnetic fields—offering critical insights for next-generation actuators and sensors. Equally striking is their earlier work, “Conductivity patterning with Physarum polycephalum: natural growth and deflecting” (2014, 11 citations), which harnesses the slime mold *Physarum polycephalum*—a single-celled organism capable of self-repair and adaptive growth—to create conductive pathways for unconventional computing systems. By demonstrating how this living network can be guided to form logic-like patterns, Albertini bridges biology and materials science, opening doors to self-organizing electronics. Though their citation counts reflect a niche but growing field, their dual focus on microfabricated smart alloys and living computational substrates marks them as a creative force in adaptive and bio-hybrid technologies.

Research Focus

Key Achievements

2
H-Index
2
Papers
24
Total Citations
12
Avg Citations/Paper
🏆 Most Cited Paper
Microfabricated ferromagnetic-shape-memory Heuslers: The geometry and size effects
13 citations · 2021
📈 Most Prolific Year: 2021 (1 Papers)
🤝 Key Collaborators: 11
🏛 Institutions: National Research Council, Institute of Materials for Electronics and Magnetism

Top Papers

  1. 1
  2. 2

Key Collaborators

Contact & Links

Available for collaboration
Content generated · 12 days ago