4.8 Article

A Colorimetric Method for Quantifying Cis and Trans Alkenes Using an Indicator Displacement Assay

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 60, Issue 25, Pages 13819-13823

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.202101004

Keywords

alkene stereochemistry; colorimetric assays; dihydroxylation; high-throughput screening; host– guest systems

Funding

  1. NSF Graduate Research Fellowship Program [DGE-1610403]
  2. NIH [1 S10 OD021508-01]
  3. NSF GOALI [1665040]
  4. Welch Regents Chair [1-0046]
  5. Division Of Chemistry
  6. Direct For Mathematical & Physical Scien [1665040] Funding Source: National Science Foundation

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A colorimetric indicator displacement assay was developed for high-throughput experimentation to determine the percentage of cis and trans alkenes. The method showed high accuracy in determining the percentage of alkene configurations and can be optimized for human eye response by tuning the color.
A colorimetric indicator displacement assay (IDA) amenable to high-throughput experimentation was developed to determine the percentage of cis and trans alkenes. Using 96-well plates two steps are performed: a reaction plate for dihydroxylation of the alkenes followed by an IDA screening plate consisting of an indicator and a boronic acid. The dihydroxylation generates either erythro or threo vicinal diols from cis or trans alkenes, depending upon their syn- or anti-addition mechanisms. Threo diols preferentially associate with the boronic acid due to the creation of more stable boronate esters, thus displacing the indicator to a greater extent. The generality of the protocol was demonstrated using seven sets of cis and trans alkenes. Blind mixtures of cis and trans alkenes were made, resulting in an average error of +/- 2 % in the percentage of cis or trans alkenes, and implementing E-2 and Wittig reactions gave errors of +/- 3 %. Furthermore, we developed variants of the IDA for which the color may be tuned to optimize the response for the human eye.

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