Abstract
Successful implementation of High throughput Experimentation (EE) tools has resulted in their increased acceptance as essential tools in chemical, petrochemical and polymer R&D laboratories. This article provides a number of concrete examples of EE systems, which have been designed and successfully implemented in studies, which focus on deriving reaction kinetic data. The implementation of high throughput EE tools for performing kinetic studies of both catalytic and non-catalytic systems results in a significantly faster acquisition of high-quality kinetic modeling data, required to quantitatively predict the behavior of complex, multistep reactions.
Keywords: Catalyst, high throughput experimentation, high throughput screening, kinetics, parallel screening, polymerization, chemical, petrochemical, multistep reactions, kinetic-quality data, highly-polar products, paramagnetic oxygen-detection, liquid-phase adsorption, olefin oligomerizaiton
Combinatorial Chemistry & High Throughput Screening
Title: Implementation of High Throughput Experimentation Techniques for Kinetic Reaction Testing
Volume: 15 Issue: 2
Author(s): Anton J. Nagy
Affiliation:
Keywords: Catalyst, high throughput experimentation, high throughput screening, kinetics, parallel screening, polymerization, chemical, petrochemical, multistep reactions, kinetic-quality data, highly-polar products, paramagnetic oxygen-detection, liquid-phase adsorption, olefin oligomerizaiton
Abstract: Successful implementation of High throughput Experimentation (EE) tools has resulted in their increased acceptance as essential tools in chemical, petrochemical and polymer R&D laboratories. This article provides a number of concrete examples of EE systems, which have been designed and successfully implemented in studies, which focus on deriving reaction kinetic data. The implementation of high throughput EE tools for performing kinetic studies of both catalytic and non-catalytic systems results in a significantly faster acquisition of high-quality kinetic modeling data, required to quantitatively predict the behavior of complex, multistep reactions.
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Cite this article as:
J. Nagy Anton, Implementation of High Throughput Experimentation Techniques for Kinetic Reaction Testing, Combinatorial Chemistry & High Throughput Screening 2012; 15 (2) . https://dx.doi.org/10.2174/138620712798868310
DOI https://dx.doi.org/10.2174/138620712798868310 |
Print ISSN 1386-2073 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5402 |
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