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Journal ArticleDOI

Expedited Screening of Active and Regioselective Catalysts for the Hydroformylation Reaction

TLDR
In this article, a new tool built upon molecular volcano plots was used to quickly predict the activity of molecular catalysts as well as estimate the intrinsic ability of each species to form one regioisomer over the other with striking accuracy.
Abstract
The discovery of new homogeneous catalysts that preferentially form one product over another in regio- or enantioselective chemical reactions has traditionally been the province of experimental chemists. Today, computational-based approaches have carved an increasingly important role, which, for computational catalytic designs, often rely on highly inefficient combinatorial-based screening methods. To increase the pace of discovery, tools capable of rapidly assessing large numbers of prospective species and identify those possessing desirable properties, such as activity and selectivity, are vital. Here, through the examination of the hydroformylation of 2-methylpropene, we demonstrate how a new tool built upon molecular volcano plots can be used to quickly predict the activity of molecular catalysts as well as estimate the intrinsic ability of each species to form one regioisomer over the other with striking accuracy. Following training and validation, these regioselective molecular volcanoes are employed to predict catalysts that preferentially form the branched product (2,2-dimethylpropanal) in violation of Keulemans’ 70-year-old law. Eighteen species (out of a total of 68 predicted) were computationally predicted to have regiomeric excess (r.e.) values > 90. Overall, these tools can be used to quickly screen the activity and selectivity of potential catalysis based on two easily computed descriptor variables.

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Journal ArticleDOI

Automated in Silico Design of Homogeneous Catalysts

TL;DR: The state of this automation and the degree to which it may be automated are studied are studied.
Journal ArticleDOI

Prospects of Heterogeneous Hydroformylation with Supported Single Atom Catalysts

TL;DR: Keeping the balance between stability and activity appears to be the main challenge for oxide supported Rh hydroformylation catalysts, where it is found that rhodium carbonyl hydride complexes on flat oxide surfaces such as CeO2(111) have catalytic activities comparable to those of molecular complexes.
Journal ArticleDOI

The Genesis of Molecular Volcano Plots.

TL;DR: In this paper, a machine learning-based approach is used to predict the value of a descriptor variable, which facilitates nearly instantaneous screening of thousands of catalysts, and the resulting database can be mined to garner an enhanced understanding of catalytic processes.
Journal ArticleDOI

Activity-Based Screening of Homogeneous Catalysts through the Rapid Assessment of Theoretically Derived Turnover Frequencies

TL;DR: In homogeneous catalysis, the turnover frequency (TOF) and turnover number (TON) are the most commonly used quantities that experimentally describe catalytic activity as mentioned in this paper, and they have been shown to be useful in the analysis of catalytic properties.
Journal ArticleDOI

Data-Driven Advancement of Homogeneous Nickel CatalystActivity for Aryl Ether Cleavage

TL;DR: The increasing urgency to make chemical processes more environmentally friendly while continuing to derive the chemicals required for modern society from renewable resources requires the developmen to developmen... as mentioned in this paper, 2013.
References
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