Collaborative Research: DMREF: Adaptive and Responsive Magnetic Swarms (ARMS)

NSF Award Search · 01002526DB NSF RESEARCH & RELATED ACTIVIT · $499,910 · view on nsf.gov ↗

Abstract

Non-technical description: The goal of this project is to build and steer swarms of micron-scale magnetic colloidal particles that come together and move cooperatively through complex environments, much like schools of fish, flocks of birds, or swarms of insects. These swarms are activated by a time-varying magnetic source (for example, an electromagnet or a moving permanent magnet) which functions as an external remote controller. The magnetic controller can direct swarms to propel through fluids, maneuver over surfaces and around obstacles, detect and respond to changes in their surroundings, and carry passive cargo. This project aims to advance the field of magnetic swarms by integrating large computer simulations, theoretical modeling, and experimental approaches within a cohesive framework. Mastering life-like swarm behavior could enable miniature ARMS robots that deliver medicine inside the body, inspect subsurface pipelines, or remove contaminants from water supplies. By opening new frontiers in materials science and programmable matter, this project advances the nation’s health, prosperity, and security while strengthening technological leadership. This project will also provide K-12, undergraduate, and graduate students with interdisciplinary training in computational and experimental techniques for materials science, physics, and engineering to develop our domestic workforce, improve public scientific literacy, and stimulate engagement with science and technology.

Key facts

NSF award ID
2522728
Awardee
William Marsh Rice University (TX)
SAM.gov UEI
K51LECU1G8N3
PI
Sibani L Biswal
Primary program
01002526DB NSF RESEARCH & RELATED ACTIVIT
All programs
(MGI) Materials Genome Initiative, Materials AI, DMREF
Estimated total
$499,910
Funds obligated
$499,910
Transaction type
Standard Grant
Period
10/01/2025 → 09/30/2029