Organic materials offer a transformative opportunity for smart edge applications due to their compatibility with large-area manufacturing, mechanical flexibility, scalability at low cost, and potentially reduced environmental impact. While their use in display technologies is now well-established, their integration into other applications domains is still in its early stages. Significant progress has been made in the development of materials for organic neuromorphic devices, enabling explorations of applications in neuroscience, soft robotics and healthcare. Additional promising directions include photonics, optoelectronics and memories. The goal of this roadmap is to consider how the properties of these materials can be leveraged to implement alternative computing methodologies to enable a new generation of organic technologies.
Roadmap for neuromorphic organic devices
Belleri, Pietro;Torricelli, Fabrizio;Zucchelli, Daniele;
2026-01-01
Abstract
Organic materials offer a transformative opportunity for smart edge applications due to their compatibility with large-area manufacturing, mechanical flexibility, scalability at low cost, and potentially reduced environmental impact. While their use in display technologies is now well-established, their integration into other applications domains is still in its early stages. Significant progress has been made in the development of materials for organic neuromorphic devices, enabling explorations of applications in neuroscience, soft robotics and healthcare. Additional promising directions include photonics, optoelectronics and memories. The goal of this roadmap is to consider how the properties of these materials can be leveraged to implement alternative computing methodologies to enable a new generation of organic technologies.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


