This article reports a functional chemical reaction network synthesized in a microfluidic device. This chemical network performs chemical 5000-fold amplification and shows a threshold response. It operates in a feedforward manner in two stages: the output of the first stage becomes the input of the second stage. Each stage of amplification is performed by a reaction autocatalytic in Co^(2+). The microfluidic network is used to maintain the two chemical reactions away from equilibrium and control the interactions between them in time. Time control is achieved as described previously (Angew. Chem., Int. Ed. 2003, 42, 768) by compartmentalizing the reaction mixture inside plugs which are aqueous droplets carried through a microchannel b...
Living cells are able to produce a wide variety of biological responses when subjected to biochemica...
AbstractThis article demonstrates that the rate of mixing can regulate the rate and outcome of both ...
The processes that led to the emergence of life is a not yet understood question. Bottom up approach...
This article reports a functional chemical reaction network synthesized in a microfluidic device. T...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
ABSTRACT This article demonstrates that the rate of mixing can regulate the rate and outcome of both...
Until very recently, synthetic chemistry has focussed on the creation of chemical entities with desi...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
The entire research described in this thesis is part of the larger field of Systems Chemistry. This ...
Millisecond mixing and transport with no dispersion are achieved by unsteady flows induced in drople...
Millisecond mixing and transport with no dispersion are achieved by unsteady flows induced in drople...
Living cells are able to produce a wide variety of biological responses when subjected to biochemica...
AbstractThis article demonstrates that the rate of mixing can regulate the rate and outcome of both ...
The processes that led to the emergence of life is a not yet understood question. Bottom up approach...
This article reports a functional chemical reaction network synthesized in a microfluidic device. T...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
ABSTRACT This article demonstrates that the rate of mixing can regulate the rate and outcome of both...
Until very recently, synthetic chemistry has focussed on the creation of chemical entities with desi...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
The entire research described in this thesis is part of the larger field of Systems Chemistry. This ...
Millisecond mixing and transport with no dispersion are achieved by unsteady flows induced in drople...
Millisecond mixing and transport with no dispersion are achieved by unsteady flows induced in drople...
Living cells are able to produce a wide variety of biological responses when subjected to biochemica...
AbstractThis article demonstrates that the rate of mixing can regulate the rate and outcome of both ...
The processes that led to the emergence of life is a not yet understood question. Bottom up approach...