Self-regulating materials require embedded control systems. Active networks of enzymes fulfill this function in living organisms, and the development of chemical controls for synthetic systems is still in its infancy. While previous work has focused on enzymatic controls, small-molecule networks have unexplored potential. We describe a simple small-molecule network that is able to produce transient pH cycles with tunable lagtimes and lifetimes, based on coupling the acid-to-alkali methylene glycol-sulfite reaction to 1,3-propanesultone, a slow acid generator. Applied to transient pH-driven supramolecular self-assembly of a perylene diimide, our system matches the flexibility of in vitro enzymatic systems, including the ability to perform re...
Signal transduction mechanisms are key to living systems. Cells respond to signals by changing catal...
Enzymes regulate complex functions and active behavior in natural systems and have shown increasing ...
Enzymes regulate complex functions and active behavior in natural systems and have shown increasing ...
Dynamic self-assembly is of great interest in the fields of chemistry, physics and materials science...
The forthcoming generation of soft materials will be designed to autonomously adapt to their environ...
In living systems, self‐assembly processes are driven by the consumption of chemical fuels. Syntheti...
In living systems, self‐assembly processes are driven by the consumption of chemical fuels. Syntheti...
It is extremely important to design stimuli-responsive biomimetic supramolecular materials. Such typ...
Autocatalytic pH clocks can be useful to control self-assembly in the time domain. Their application...
Here, we exploit a small biomolecule-ATP-to gain temporal control over chemical reactivity in a synt...
Here, we exploit a small biomolecule-ATP-to gain temporal control over chemical reactivity in a synt...
Nature regulates complex structures in space and time via feedback loops, kinetically controlled tra...
Nature regulates complex structures in space and time via feedback loops, kinetically controlled tra...
Nature regulates complex structures in space and time via feedback loops, kinetically controlled tra...
Until very recently, synthetic chemistry has focussed on the creation of chemical entities with desi...
Signal transduction mechanisms are key to living systems. Cells respond to signals by changing catal...
Enzymes regulate complex functions and active behavior in natural systems and have shown increasing ...
Enzymes regulate complex functions and active behavior in natural systems and have shown increasing ...
Dynamic self-assembly is of great interest in the fields of chemistry, physics and materials science...
The forthcoming generation of soft materials will be designed to autonomously adapt to their environ...
In living systems, self‐assembly processes are driven by the consumption of chemical fuels. Syntheti...
In living systems, self‐assembly processes are driven by the consumption of chemical fuels. Syntheti...
It is extremely important to design stimuli-responsive biomimetic supramolecular materials. Such typ...
Autocatalytic pH clocks can be useful to control self-assembly in the time domain. Their application...
Here, we exploit a small biomolecule-ATP-to gain temporal control over chemical reactivity in a synt...
Here, we exploit a small biomolecule-ATP-to gain temporal control over chemical reactivity in a synt...
Nature regulates complex structures in space and time via feedback loops, kinetically controlled tra...
Nature regulates complex structures in space and time via feedback loops, kinetically controlled tra...
Nature regulates complex structures in space and time via feedback loops, kinetically controlled tra...
Until very recently, synthetic chemistry has focussed on the creation of chemical entities with desi...
Signal transduction mechanisms are key to living systems. Cells respond to signals by changing catal...
Enzymes regulate complex functions and active behavior in natural systems and have shown increasing ...
Enzymes regulate complex functions and active behavior in natural systems and have shown increasing ...