Lionel Salmon
Papers
1
Total Citations
9
H-Index
1
About
Lionel Salmon is a leading figure in molecular spintronics and switchable molecular materials, with a particular focus on spin crossover (SCO) complexes. His research bridges the gap between molecular magnetism and organic electronics, pioneering methods to electrically detect and control spin state transitions. Salmon’s most cited work demonstrates a breakthrough in integrating a spin crossover polymer composite into an organic field-effect transistor (OFET), achieving a remarkable 50–70% increase in drain-source current upon spin state switching. This electrical sensing of molecular spin states, published in 2024, has already garnered 9 citations, highlighting its immediate impact on the field. Beyond this, Salmon has made foundational contributions to the design of bistable molecular materials, exploring how external stimuli like light, temperature, or electric fields can trigger cooperative spin transitions. His work is instrumental for developing next-generation memory devices, sensors, and quantum computing components. Salmon’s achievements underscore his role as a key innovator in molecular electronics, offering students and researchers a compelling model of how fundamental chemistry can drive transformative technologies.
Research Focus
Key Achievements
Top Papers
- 1