In a recent article [J. Chem. Phys., 143, 094106 (2015)], we have introduced a novel graph-based sampling scheme which can be used to generate chemical reaction paths in many-atom systems in an efficient and highly-automated manner. The main goal of this work is to demonstrate how this approach, when combined with direct kinetic modelling, can be used to determine the mechanism and phenomenological rate law of a complex catalytic cycle, namely cobalt-catalyzed hydroformylation of ethene. Our graph-based sampling scheme generates 31 unique chemical products and 32 unique chemical reaction pathways; these sampled structures and reaction paths en- able automated construction of a kinetic network model of the catalytic system when combined with...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2003.Includes...
We herein report experimental applications of a novel, automated computational approach to chemical ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Automatically generating chemical reaction pathways is a significant computational challenge, partic...
Computational methods for predicting multi-step reaction mechanisms, such as those found in homogene...
Graph-based descriptors, such as bond-order matrices and adjacency matrices, offer a simple and comp...
Chemical reactions can have a staggering amount of molecular complexity. Reaction mechanisms have be...
Computational chemistry is often used to assess reaction mechanisms qualitatively. Catalytic reactio...
Many important processes in the world are controlled by chemical kinetics, from the combustion of fu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2018Catal...
Proposing and testing mechanistic hypotheses stands as one of the key applications of contemporary c...
Numerous different algorithms have been developed over the last few years which are capable of gener...
Numerous different algorithms have been developed over the last few years which are capable of gener...
Computational methods for predicting multi-step reaction mechanisms, such as those found in homogene...
In many scientific fields, there is an interest in understanding the way in which chemical networks ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2003.Includes...
We herein report experimental applications of a novel, automated computational approach to chemical ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Automatically generating chemical reaction pathways is a significant computational challenge, partic...
Computational methods for predicting multi-step reaction mechanisms, such as those found in homogene...
Graph-based descriptors, such as bond-order matrices and adjacency matrices, offer a simple and comp...
Chemical reactions can have a staggering amount of molecular complexity. Reaction mechanisms have be...
Computational chemistry is often used to assess reaction mechanisms qualitatively. Catalytic reactio...
Many important processes in the world are controlled by chemical kinetics, from the combustion of fu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2018Catal...
Proposing and testing mechanistic hypotheses stands as one of the key applications of contemporary c...
Numerous different algorithms have been developed over the last few years which are capable of gener...
Numerous different algorithms have been developed over the last few years which are capable of gener...
Computational methods for predicting multi-step reaction mechanisms, such as those found in homogene...
In many scientific fields, there is an interest in understanding the way in which chemical networks ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2003.Includes...
We herein report experimental applications of a novel, automated computational approach to chemical ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...