Light-mediated communication in responsive materials ranging from individual self-oscillators to feedback-driven network

H Hongshuang Guo K Kai Li J Jianfeng Yang D Dengfeng Li F Fan Liu H Hao Zeng (Department of Ophthalmology, Shanghai Changhai Hospital, Naval Medical University)

Abstract

Abstract The natural interactive materials under far-from-equilibrium conditions have significantly inspired advances in synthetic biomimetic materials. In artificial systems, there are means of interaction between individuals, for instance, mechanical contact, hydrodynamic coupling, thermal gradient, chemical diffusion and magnetic field. However, they generally lack high directionality or sufficient interaction ranges. Here, we present a method for constructing highly directed, interactive structures via optical feedback in light responsive materials far from their thermodynamic equilibria. We showcase a photomechanical operator system comprising a baffle and a soft actuator. Positive and negative operators are configured to induce light-triggered deformations, alternately interrupting the passage of two light beams in a closed feedback loop. The fundamental functionalities of this optically interconnected material loop include homeostasis-like self-oscillation and signal transmission from one material to another via light. Refinements in optical alignment allow remote sensing and feedback networks capable of adaptation in both materials’ shape-morphing states and oscillating frequencies. The results show a versatile design method for light-mediated interaction among responsive materials, with applicability in everyday materials.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 20, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (6)

H

Hongshuang Guo

K

Kai Li

J

Jianfeng Yang

D

Dengfeng Li

F

Fan Liu

H

Hao Zeng

Department of Ophthalmology, Shanghai Changhai Hospital, Naval Medical University