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Altering Product Selectivity by Mechanochemistry

The Journal of Organic Chemistry · 2017 · Vol. 82(8) · pp. 4007–4019
José G. HernándezCarsten Bolm

Abstract

Mechanochemical activation achieved by grinding, shearing, pulling, or milling opens unique opportunities in synthetic organic chemistry. Common features are that mechanochemistry facilitates reactions with insoluble reactants, enables high-yielding solvent-free synthetic procedures, and shortens reaction times, among others. However, mechanochemical techniques can also alter chemical reactivity and selectivity compared to the analogous solution-based protocols. As a consequence, solvent-free milling can lead to different product compositions or equilibration mixtures than in solution. Reactions by milling have also allowed the trapping and characterization of elusive intermediates and materials. In this Perspective we highlight a few selected examples that illustrate the value of mechanochemistry in uncovering interesting chemical reactivity, which is often masked in typical liquid-phase synthesis.

Crystallography and molecular interactionsSynthesis and Reactivity of HeterocyclesCoordination Chemistry and OrganometallicsMechanochemistryChemistrySelectivityReactivity (psychology)GrindingChemical reactionSolventChemical synthesisOrganic chemistryCombinatorial chemistry

Funding

  • RWTH Aachen University
Citations
694
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Cited by
Mechanochemistry for Organic Chemists: An Update
European Journal of Organic Chemistry · 2017 · 345 citations
References
C60: Buckminsterfullerene
Nature · 1985 · 15,775 citations
Mechanochemistry: opportunities for new and cleaner synthesis
Chemical Society Reviews · 2011 · 2,928 citations
Advances in organometallic synthesis with mechanochemical methods
Dalton Transactions · 2016 · 361 citations
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