Roadmap for animate matter

Open Access
Authors
  • Giorgio Volpe
  • Nuno A.M. Araújo
  • Maria Guix
  • Mark Miodownik
  • Nicolas Martin
  • Laura Alvarez
  • Juliane Simmchen
  • Roberto Di Leonardo
  • Nicola Pellicciotta
  • Quentin Martinet
  • Jérémie Palacci
  • Wai Kit Ng
  • Dhruv Saxena
  • Riccardo Sapienza
  • Sara Nadine
  • João F. Mano
  • Reza Mahdavi
  • Caroline Beck Adiels
  • Joe Forth
  • Christian Santangelo
  • Stefano Palagi
  • Ji Min Seok
  • Victoria A. Webster-Wood
  • Shuhong Wang
  • Lining Yao
  • Amirreza Aghakhani
  • Thomas Barois
  • Hamid Kellay
  • Corentin Coulais ORCID logo
  • Martin van Hecke
  • Christopher J. Pierce
  • Tianyu Wang
  • Baxi Chong
  • Daniel I. Goldman
  • Andreagiovanni Reina
  • Vito Trianni
  • Giovanni Volpe
  • Richard Beckett
  • Sean P. Nair
  • Rachel Armstrong
Publication date 18-08-2025
Journal Journal of Physics Condensed Matter
Article number 333501
Volume | Issue number 37 | 33
Number of pages 78
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Van der Waals-Zeeman Institute (WZI)
  • Faculty of Science (FNWI) - Institute of Physics (IoP)
Abstract

Humanity has long sought inspiration from nature to innovate materials and devices. As science advances, nature-inspired materials are becoming part of our lives. Animate materials, characterized by their activity, adaptability, and autonomy, emulate properties of living systems. While only biological materials fully embody these principles, artificial versions are advancing rapidly, promising transformative impacts in the circular economy, health and climate resilience within a generation. This roadmap presents authoritative perspectives on animate materials across different disciplines and scales, highlighting their interdisciplinary nature and potential applications in diverse fields including nanotechnology, robotics and the built environment. It underscores the need for concerted efforts to address shared challenges such as complexity management, scalability, evolvability, interdisciplinary collaboration, and ethical and environmental considerations. The framework defined by classifying materials based on their level of animacy can guide this emerging field to encourage cooperation and responsible development. By unravelling the mysteries of living matter and leveraging its principles, we can design materials and systems that will transform our world in a more sustainable manner.

Document type Review article
Language English
Published at
https://doi.org/10.1088/1361-648X/adebd3 (Final published version)
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