Towards Animate Droplets: Active, Adaptive, and Autonomous

Fuente: arXiv
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Autores principales: Forth, Joe, Malinowski, Robert, Volpe, Giorgio
Formato: Preprint
Publicado: 2025
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author Forth, Joe
Malinowski, Robert
Volpe, Giorgio
author_facet Forth, Joe
Malinowski, Robert
Volpe, Giorgio
contents Droplets, sub-millilitre liquid volumes with at least one interface, have traditionally served as compartments for storing, transporting, and delivering materials. Beyond familiar applications in food, coatings, and consumer goods, they find cutting-edge use in energy storage, sensing, and tissue engineering. The next frontier is their integration into animate matter, emerging materials defined by their levels of activity, adaptiveness, and autonomy. Easy to produce and dispense or print into complex structures, and with enormous chemical versatility, droplets are ideal building blocks for animate matter. In this Perspective, we outline a roadmap for advancing animacy in droplets and call for a more concerted effort to integrate novel mechanisms for motility, sensing, and decision-making into droplet design. Although research on active droplets spans more than a century, achieving true autonomy, where droplets process multiple stimuli and respond without external control, remains a central challenge. We hope to inspire interdisciplinary collaboration towards applications in consumer goods, microfluidics, adaptive optics, tissue engineering, and soft robotics.
format Preprint
id arxiv_https___arxiv_org_abs_2512_13425
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Towards Animate Droplets: Active, Adaptive, and Autonomous
Forth, Joe
Malinowski, Robert
Volpe, Giorgio
Soft Condensed Matter
Materials Science
Applied Physics
Chemical Physics
Fluid Dynamics
Droplets, sub-millilitre liquid volumes with at least one interface, have traditionally served as compartments for storing, transporting, and delivering materials. Beyond familiar applications in food, coatings, and consumer goods, they find cutting-edge use in energy storage, sensing, and tissue engineering. The next frontier is their integration into animate matter, emerging materials defined by their levels of activity, adaptiveness, and autonomy. Easy to produce and dispense or print into complex structures, and with enormous chemical versatility, droplets are ideal building blocks for animate matter. In this Perspective, we outline a roadmap for advancing animacy in droplets and call for a more concerted effort to integrate novel mechanisms for motility, sensing, and decision-making into droplet design. Although research on active droplets spans more than a century, achieving true autonomy, where droplets process multiple stimuli and respond without external control, remains a central challenge. We hope to inspire interdisciplinary collaboration towards applications in consumer goods, microfluidics, adaptive optics, tissue engineering, and soft robotics.
title Towards Animate Droplets: Active, Adaptive, and Autonomous
topic Soft Condensed Matter
Materials Science
Applied Physics
Chemical Physics
Fluid Dynamics
url https://arxiv.org/abs/2512.13425