Morphodynamics of surface-attached active drops

A Alejandro Martínez-Calvo (Department of Chemical and Biological Engineering) S Sujit S. Datta (Department of Chemical and Biological Engineering)

Abstract

Abstract Many biological and synthetic systems are suspensions of oriented actively-moving components. Unlike in passive suspensions, the interplay between orientational order, active flows, and interactions with boundaries gives rise to fascinating new phenomena in such active suspensions. Here, we examine the paradigmatic example of a surface-attached drop of an active fluid (an “active drop”), which has so far only been studied in the idealized limit of thin drops. We find that such surface-attached active drops can exhibit a wide array of stable steady-state shapes and internal flows that are far richer than those documented previously, depending on boundary conditions and the strength of active stresses. Our analysis uncovers quantitative principles to predict and even rationally control the conditions under which these different states arise—yielding design principles for next-generation active materials.

Article Details

Volume / Issue Vol. 17, Issue 1
Published February 12, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (2)

A

Alejandro Martínez-Calvo

Department of Chemical and Biological Engineering

S

Sujit S. Datta

Department of Chemical and Biological Engineering