Publication:
Versatile, modular, and customizable magnetic solid-droplet systems

Placeholder

Organizational Units

Program

KU-Authors

KU Authors

Co-Authors

Sun, Mengmeng
Wu, Yingdan
Zhang, Jianhua
Zhang, Hongchuan
Liu, Zemin
Li, Mingtong
Wang, Chunxiang

Advisor

Publication Date

2024

Language

en

Type

Journal article

Journal Title

Journal ISSN

Volume Title

Abstract

Magnetic miniature robotic systems have attracted broad research interest because of their precise maneuverability in confined spaces and adaptability to diverse environments, holding significant promise for applications in both industrial infrastructures and biomedical fields. However, the predominant construction methodology involves the preprogramming of magnetic components into the system’s structure. While this approach allows for intricate shape transformations, it exhibits limited flexibility in terms of reconfiguration and presents challenges when adapting to diverse materials, combining, and decoupling multiple functionalities. Here, we propose a construction strategy that facilitates the on-demand assembly of magnetic components, integrating ferrofluid droplets with the system’s structural body. This approach enables the creation of complex solid-droplet robotic systems across a spectrum of length scales, ranging from 0.8 mm to 1.5 cm. It offers a diverse selection of materials and structural configurations, akin to assembling components like building blocks, thus allowing for the seamless integration of various functionalities. Moreover, it incorporates decoupling mechanisms to enable selective control over multiple functions, leveraging the fluidity, fission/fusion, and magneto-responsiveness properties inherent in the ferrofluid. Various solid-droplet systems have validated the feasibility of this strategy. This study advances the complexity and functionality achievable in small-scale magnetic robots, augmenting their potential for future biomedical and other applications. Copyright © 2024 the Author(s)

Description

Source:

Proceedings of the National Academy of Sciences of the United States of America

Publisher:

National Academy of Sciences

Keywords:

Subject

Ferrofluid, Nanocomposite, Polymer

Citation

Endorsement

Review

Supplemented By

Referenced By

Copy Rights Note

0

Views

0

Downloads

View PlumX Details