Autocatalytic chemical reactions are widely studied as models of biological processes and to better understand the origins of life on earth. Minimal self-reproducing amphiphiles have been developed in this context, and as an approach to de novo ‘bottom-up’ synthetic protocells. How chemicals come together to produce living systems remains poorly understood, despite much experimentation and speculation. Here, we use ultrasensitive label-free optical microscopy to visualize the spontaneous emergence of an autocatalytic system from an aqueous mixture of two chemicals. Quantitative, in situ nanoscale imaging reveals heterogeneous self-reproducing aggregates and enables the real-time visualization of the synthesis of new aggregates at the reacti...
Many non-equilibrium reactions take place in very small systems: reaction in cells, micelles, on cat...
Autocatalytic chemical reactions, whereby a molecule is able to catalyze its own formation from a se...
Nonequilibrium localized structures of submicrometer and nanometer sizes, carrying the reaction, can...
Autocatalytic chemical reactions are widely studied as models of biological processes and to better ...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
Self-replication and compartmentalization are two central properties thought to be essential for min...
Autocatalysis is central to the propagation of living systems and is widely agreed to have played a ...
Studying dynamic self-assembling systems in their native environment is essential for understanding ...
A key goal of chemistry is to develop synthetic systems that mimic biology, such as self-assembling,...
Numerous mechanisms have been studied for chemical reactions to provide quantitative predictions on ...
Direct visualization of pathways followed by single molecules while they spontaneously self-assemble...
We report chemically fuelled out‐of‐equilibrium self‐replicating vesicles based on surfactant format...
An in-depth understanding of dynamic interfacial self-assembly processes is essential for a wide ran...
The self-assembly of chemical entities represents a very attractive way to create a large variety of...
Many non-equilibrium reactions take place in very small systems: reaction in cells, micelles, on cat...
Autocatalytic chemical reactions, whereby a molecule is able to catalyze its own formation from a se...
Nonequilibrium localized structures of submicrometer and nanometer sizes, carrying the reaction, can...
Autocatalytic chemical reactions are widely studied as models of biological processes and to better ...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
Autocatalysis has been extensively studied because it is central to the propagation of living system...
Self-replication and compartmentalization are two central properties thought to be essential for min...
Autocatalysis is central to the propagation of living systems and is widely agreed to have played a ...
Studying dynamic self-assembling systems in their native environment is essential for understanding ...
A key goal of chemistry is to develop synthetic systems that mimic biology, such as self-assembling,...
Numerous mechanisms have been studied for chemical reactions to provide quantitative predictions on ...
Direct visualization of pathways followed by single molecules while they spontaneously self-assemble...
We report chemically fuelled out‐of‐equilibrium self‐replicating vesicles based on surfactant format...
An in-depth understanding of dynamic interfacial self-assembly processes is essential for a wide ran...
The self-assembly of chemical entities represents a very attractive way to create a large variety of...
Many non-equilibrium reactions take place in very small systems: reaction in cells, micelles, on cat...
Autocatalytic chemical reactions, whereby a molecule is able to catalyze its own formation from a se...
Nonequilibrium localized structures of submicrometer and nanometer sizes, carrying the reaction, can...