Although ???active??? surfactants, which are responsive to individual external stimuli such as temperature1, electric2,3 or magnetic4 fields, light5,6, redox processes6,7 or chemical agents8, are well known, it would be interesting to combine several of these properties within one surfactant species. Such multi-responsive surfactants could provide ways of manipulating individual droplets and possibly assembling them into larger systems of dynamic reactors9,10. Here we describe surfactants based on functionalized nanoparticle dimers that combine all of these and several other characteristics. These surfactants and therefore the droplets that they cover are simultaneously addressable by magnetic, optical and electric fields. As a result, the ...
We report a new class of dynamically reconfigurable complex colloids comprising immiscible liquid cr...
The quintessential living element of all organisms is the cell—a fluid-filled compartment enclosed, ...
Sub???micrometer metal???organic framework (MOF) particles form sturdy yet dynamic???that is, struct...
Although 'active' surfactants, which are responsive to individual external stimuli such as temperatu...
Manipulation of droplet is of significant interest for a broad range of applications from lab on a c...
Under non-equilibrium conditions, liquid droplets coupled to their environment by sustained flows of...
Chemotactic interactions are ubiquitous in nature and can lead to non-reciprocal and complex emergen...
Communication amongst droplets via reconfigurable connections enables next generations of “smart” ma...
In nature, microorganisms and cells have evolved sophisticated protein machinery that enables them t...
Microscopic motility is a property that emerges from systems of interacting molecules. Unraveling th...
Sub‐micrometer metal–organic framework (MOF) particles form sturdy yet dynamic—that is, structurally...
The emulation of the complex cellular and bacterial vesicles used to transport materials through flu...
The motion of microscopic objects is strongly affected by their surrounding environment. In quiescen...
We introduce a model of chemically active particles of a multi-component fluid that can change their...
The ability to regulate interfacial and wetting properties is highly demanded in anti-icing, anti-bi...
We report a new class of dynamically reconfigurable complex colloids comprising immiscible liquid cr...
The quintessential living element of all organisms is the cell—a fluid-filled compartment enclosed, ...
Sub???micrometer metal???organic framework (MOF) particles form sturdy yet dynamic???that is, struct...
Although 'active' surfactants, which are responsive to individual external stimuli such as temperatu...
Manipulation of droplet is of significant interest for a broad range of applications from lab on a c...
Under non-equilibrium conditions, liquid droplets coupled to their environment by sustained flows of...
Chemotactic interactions are ubiquitous in nature and can lead to non-reciprocal and complex emergen...
Communication amongst droplets via reconfigurable connections enables next generations of “smart” ma...
In nature, microorganisms and cells have evolved sophisticated protein machinery that enables them t...
Microscopic motility is a property that emerges from systems of interacting molecules. Unraveling th...
Sub‐micrometer metal–organic framework (MOF) particles form sturdy yet dynamic—that is, structurally...
The emulation of the complex cellular and bacterial vesicles used to transport materials through flu...
The motion of microscopic objects is strongly affected by their surrounding environment. In quiescen...
We introduce a model of chemically active particles of a multi-component fluid that can change their...
The ability to regulate interfacial and wetting properties is highly demanded in anti-icing, anti-bi...
We report a new class of dynamically reconfigurable complex colloids comprising immiscible liquid cr...
The quintessential living element of all organisms is the cell—a fluid-filled compartment enclosed, ...
Sub???micrometer metal???organic framework (MOF) particles form sturdy yet dynamic???that is, struct...