Investigating a reactive chemical system with automated reaction network exploration algorithms provides a more detailed picture of its chemical mechanism than what would be accessible by manual investigation. In general, exploration algorithms cannot uncover reaction networks exhaustively for feasibility reasons. They should therefore decide which part of a network is kinetically relevant under some external conditions given. Here, we propose an automated algorithm that identifies and explores kinetically accessible regions of a reaction network on the fly by explicit modeling of concentration fluxes through an (incomplete) reaction network that is emerging during automated first-principles exploration. Key compounds are automatically iden...
<p>The entire chemical-synthetic knowledge can be represented as a complex network containing millio...
Chemical reactions can have a staggering amount of molecular complexity. Reaction mechanisms have be...
We developed an automated approach to construct the complex reaction network and explore the reactio...
For the investigation of chemical reaction networks, the efficient and accurate determination of all...
For the investigation of chemical reaction networks, the efficient and accurate determination of all...
For the investigation of chemical reaction networks, the identification of all relevant intermediate...
The identification of models of chemical reaction networks is of importance in the safe, economic an...
Numerous different algorithms have been developed over the last few years which are capable of gener...
University of Minnesota Ph.D. Thesis. August 2013. Major: Chemical Engineering. Advisors: Prodromos ...
Numerous different algorithms have been developed over the last few years which are capable of gener...
Fueled by advances in hardware and algorithm design, large-scale automated explorations of chemical ...
Autonomously exploringchemical reaction networks withfirst-principlesmethods can generate vast data....
Background: A classical problem in metabolic design is to maximize the production of a desired compo...
Background: A classical problem in metabolic design is to maximize the production of desired compoun...
In many scientific fields, there is an interest in understanding the way in which chemical networks ...
<p>The entire chemical-synthetic knowledge can be represented as a complex network containing millio...
Chemical reactions can have a staggering amount of molecular complexity. Reaction mechanisms have be...
We developed an automated approach to construct the complex reaction network and explore the reactio...
For the investigation of chemical reaction networks, the efficient and accurate determination of all...
For the investigation of chemical reaction networks, the efficient and accurate determination of all...
For the investigation of chemical reaction networks, the identification of all relevant intermediate...
The identification of models of chemical reaction networks is of importance in the safe, economic an...
Numerous different algorithms have been developed over the last few years which are capable of gener...
University of Minnesota Ph.D. Thesis. August 2013. Major: Chemical Engineering. Advisors: Prodromos ...
Numerous different algorithms have been developed over the last few years which are capable of gener...
Fueled by advances in hardware and algorithm design, large-scale automated explorations of chemical ...
Autonomously exploringchemical reaction networks withfirst-principlesmethods can generate vast data....
Background: A classical problem in metabolic design is to maximize the production of a desired compo...
Background: A classical problem in metabolic design is to maximize the production of desired compoun...
In many scientific fields, there is an interest in understanding the way in which chemical networks ...
<p>The entire chemical-synthetic knowledge can be represented as a complex network containing millio...
Chemical reactions can have a staggering amount of molecular complexity. Reaction mechanisms have be...
We developed an automated approach to construct the complex reaction network and explore the reactio...